Package evaluation to test HydroElasticFEM on Julia 1.14.0-DEV.3081 (21a70e450d*) started at 2026-09-02T12:49:00.723 ################################################################################ # Set-up # Installing PkgEval dependencies (TestEnv)... Activating project at `~/.julia/environments/v1.14` Set-up completed after 32.52s ################################################################################ # Installation # Installing HydroElasticFEM... Resolving package versions... Installed GridapGmsh ─ v0.7.4 Updating `~/.julia/environments/v1.14/Project.toml` [e85360b2] + HydroElasticFEM v0.1.2 Updating `~/.julia/environments/v1.14/Manifest.toml` [47edcb42] + ADTypes v1.24.0 [621f4979] + AbstractFFTs v1.5.0 [1520ce14] + AbstractTrees v0.4.5 [7d9f7c33] + Accessors v0.1.45 [79e6a3ab] + Adapt v4.7.0 [66dad0bd] + AliasTables v1.1.3 [dce04be8] + ArgCheck v2.5.0 [ec485272] + ArnoldiMethod v0.4.0 [4fba245c] + ArrayInterface v7.30.1 [4c555306] + ArrayLayouts v1.12.2 [a9b6321e] + Atomix v1.1.3 [15f4f7f2] + AutoHashEquals v2.2.0 [13072b0f] + AxisAlgorithms v1.1.0 [fbb218c0] + BSON v0.3.9 [62783981] + BitTwiddlingConvenienceFunctions v0.1.6 [8e7c35d0] + BlockArrays v1.10.0 [fa961155] + CEnum v0.5.0 [2a0fbf3d] + CPUSummary v0.2.7 [d360d2e6] + ChainRulesCore v1.26.1 [0b6fb165] + ChunkCodecCore v1.0.2 [4c0bbee4] + ChunkCodecLibZlib v1.1.0 [55437552] + ChunkCodecLibZstd v1.0.0 [7a955b69] + CircularArrays v1.5.0 [fb6a15b2] + CloseOpenIntervals v0.1.13 [944b1d66] + CodecZlib v0.7.9 [35d6a980] + ColorSchemes v3.31.0 [3da002f7] + ColorTypes v0.12.1 [c3611d14] + ColorVectorSpace v0.11.0 [5ae59095] + Colors v0.13.1 [861a8166] + Combinatorics v1.1.0 [38540f10] + CommonSolve v0.2.14 [bbf7d656] + CommonSubexpressions v0.3.1 [f70d9fcc] + CommonWorldInvalidations v1.2.0 [34da2185] + Compat v4.18.1 [a33af91c] + CompositionsBase v0.1.2 [187b0558] + ConstructionBase v1.6.0 [d38c429a] + Contour v0.6.3 [adafc99b] + CpuId v0.3.1 [a8cc5b0e] + Crayons v4.2.0 [9a962f9c] + DataAPI v1.16.0 [a93c6f00] + DataFrames v1.8.2 [864edb3b] + DataStructures v0.19.6 [e2d170a0] + DataValueInterfaces v1.0.0 [8bb1440f] + DelimitedFiles v1.9.1 [163ba53b] + DiffResults v1.1.0 [b552c78f] + DiffRules v1.16.0 [a0c0ee7d] + DifferentiationInterface v0.7.21 [b4f34e82] + Distances v0.10.12 [31c24e10] + Distributions v0.25.131 [ffbed154] + DocStringExtensions v0.9.5 [c87230d0] + FFMPEG v0.4.5 [7a1cc6ca] + FFTW v1.10.0 [442a2c76] + FastGaussQuadrature v1.3.0 [5789e2e9] + FileIO v1.20.0 [1a297f60] + FillArrays v1.17.0 [6a86dc24] + FiniteDiff v2.33.0 ⌅ [53c48c17] + FixedPointNumbers v0.8.6 [1fa38f19] + Format v1.3.7 [f6369f11] + ForwardDiff v1.4.5 [28b8d3ca] + GR v0.73.27 [a0844989] + Gamma v1.2.0 [86223c79] + Graphs v1.14.0 [56d4f2e9] + Gridap v0.20.9 [f9701e48] + GridapDistributed v0.4.17 [3025c34a] + GridapGmsh v0.7.4 [076d061b] + HashArrayMappedTries v0.2.0 [e85360b2] + HydroElasticFEM v0.1.2 [34004b35] + HypergeometricFunctions v0.3.30 [615f187c] + IfElse v0.1.1 [d25df0c9] + Inflate v0.1.5 [842dd82b] + InlineStrings v1.4.5 [a98d9a8b] + Interpolations v0.16.3 [3587e190] + InverseFunctions v0.1.17 [41ab1584] + InvertedIndices v1.3.1 [92d709cd] + IrrationalConstants v0.2.6 [42fd0dbc] + IterativeSolvers v0.9.4 [82899510] + IteratorInterfaceExtensions v1.0.0 [033835bb] + JLD2 v0.6.6 [1019f520] + JLFzf v0.1.11 [692b3bcd] + JLLWrappers v1.8.0 [682c06a0] + JSON v1.7.1 [b964fa9f] + LaTeXStrings v1.4.1 [23fbe1c1] + Latexify v0.16.12 [10f19ff3] + LayoutPointers v0.1.17 [9c8b4983] + LightXML v0.9.3 ⌃ [d3d80556] + LineSearches v7.5.1 [2ab3a3ac] + LogExpFunctions v1.0.1 [da04e1cc] + MPI v0.20.27 [3da0fdf6] + MPIPreferences v0.1.12 [1914dd2f] + MacroTools v0.5.16 [d125e4d3] + ManualMemory v0.1.8 [442fdcdd] + Measures v0.3.3 [2679e427] + Metis v1.5.0 [e1d29d7a] + Missings v1.2.0 ⌅ [d41bc354] + NLSolversBase v7.10.0 ⌅ [2774e3e8] + NLsolve v4.5.1 [77ba4419] + NaNMath v1.1.4 [b8a86587] + NearestNeighbors v0.4.29 [6fe1bfb0] + OffsetArrays v1.17.0 [bac558e1] + OrderedCollections v2.0.1 [90014a1f] + PDMats v0.11.41 [d96e819e] + Parameters v0.13.1 ⌅ [69de0a69] + Parsers v2.8.7 ⌅ [5a9dfac6] + PartitionedArrays v0.3.5 [eebad327] + PkgVersion v0.3.3 [ccf2f8ad] + PlotThemes v3.3.0 [995b91a9] + PlotUtils v1.4.4 [91a5bcdd] + Plots v1.41.7 [f517fe37] + Polyester v0.7.19 [1d0040c9] + PolyesterWeave v0.2.2 [c74db56a] + PolynomialBases v0.4.28 [2dfb63ee] + PooledArrays v1.4.3 [aea7be01] + PrecompileTools v1.3.4 [21216c6a] + Preferences v1.5.2 [08abe8d2] + PrettyTables v3.4.8 [43287f4e] + PtrArrays v1.4.0 [1fd47b50] + QuadGK v2.11.3 [c84ed2f1] + Ratios v0.4.5 [3cdcf5f2] + RecipesBase v1.3.4 [01d81517] + RecipesPipeline v0.6.12 [189a3867] + Reexport v1.2.2 [05181044] + RelocatableFolders v1.0.1 [ae029012] + Requires v1.3.1 [79098fc4] + Rmath v0.9.0 [f2b01f46] + Roots v3.0.7 [94e857df] + SIMDTypes v0.1.0 [431bcebd] + SciMLPublic v1.3.0 [7e506255] + ScopedValues v1.6.2 [6c6a2e73] + Scratch v1.3.0 [91c51154] + SentinelArrays v1.4.10 [efcf1570] + Setfield v1.1.2 [992d4aef] + Showoff v1.1.1 [699a6c99] + SimpleTraits v0.9.6 [ce78b400] + SimpleUnPack v1.1.0 [a2af1166] + SortingAlgorithms v1.2.3 [a0a7dd2c] + SparseMatricesCSR v0.6.12 [276daf66] + SpecialFunctions v2.9.0 [860ef19b] + StableRNGs v1.0.4 [aedffcd0] + Static v1.4.6 [0d7ed370] + StaticArrayInterface v1.10.0 [90137ffa] + StaticArrays v1.9.19 [1e83bf80] + StaticArraysCore v1.4.4 [10745b16] + Statistics v1.11.4 [82ae8749] + StatsAPI v1.8.0 [2913bbd2] + StatsBase v0.34.13 [4c63d2b9] + StatsFuns v2.2.1 [7792a7ef] + StrideArraysCore v0.5.9 ⌅ [892a3eda] + StringManipulation v0.5.0 [ec057cc2] + StructUtils v2.8.5 [3783bdb8] + TableTraits v1.0.1 [bd369af6] + Tables v1.14.0 [62fd8b95] + TensorCore v0.1.1 [8290d209] + ThreadingUtilities v0.5.6 [3bb67fe8] + TranscodingStreams v0.11.3 [3a884ed6] + UnPack v1.0.2 [1cfade01] + UnicodeFun v0.4.1 [013be700] + UnsafeAtomics v0.3.2 [41fe7b60] + Unzip v0.2.0 [4004b06d] + VTKBase v1.0.1 [908d4cf6] + WaveSpec v0.3.1 [efce3f68] + WoodburyMatrices v1.1.0 [64499a7a] + WriteVTK v1.22.0 [6e34b625] + Bzip2_jll v1.0.9+0 [83423d85] + Cairo_jll v1.18.7+0 [ee1fde0b] + Dbus_jll v1.16.2+0 [2702e6a9] + EpollShim_jll v0.0.20230411+1 [2e619515] + Expat_jll v2.8.3+0 ⌅ [b22a6f82] + FFMPEG_jll v8.1.2+0 [f5851436] + FFTW_jll v3.3.12+0 [4fce6fc7] + FLTK_jll v1.3.8+0 [a3f928ae] + Fontconfig_jll v2.17.1+0 [d7e528f0] + FreeType2_jll v2.14.3+1 [559328eb] + FriBidi_jll v1.0.17+0 [0656b61e] + GLFW_jll v3.5.1+0 [bd17208b] + GLU_jll v9.0.1+0 [d2c73de3] + GR_jll v0.73.27+0 ⌅ [b0724c58] + GettextRuntime_jll v0.22.4+0 [61579ee1] + Ghostscript_jll v9.55.1+0 [7746bdde] + Glib_jll v2.88.3+0 [3b182d85] + Graphite2_jll v1.3.16+0 ⌅ [0234f1f7] + HDF5_jll v1.14.3+3 [2e76f6c2] + HarfBuzz_jll v100.14003.0+0 [e33a78d0] + Hwloc_jll v2.14.0+0 [1d5cc7b8] + IntelOpenMP_jll v2025.2.0+0 [aacddb02] + JpegTurbo_jll v3.2.0+1 [c1c5ebd0] + LAME_jll v3.100.3+0 [88015f11] + LERC_jll v4.1.0+0 [1d63c593] + LLVMOpenMP_jll v22.1.7+0 ⌅ [e9f186c6] + Libffi_jll v3.4.7+0 [7e76a0d4] + Libglvnd_jll v1.7.1+1 [94ce4f54] + Libiconv_jll v1.18.0+0 [4b2f31a3] + Libmount_jll v2.42.0+0 [89763e89] + Libtiff_jll v4.7.3+0 [38a345b3] + Libuuid_jll v2.42.0+0 [18c40d15] + LinearElasticity_jll v5.0.0+0 [d00139f3] + METIS_jll v5.1.3+0 [856f044c] + MKL_jll v2025.2.0+0 [86086c02] + MMG_jll v5.6.0+0 [b5ada748] + MPIABI_jll v1.0.0+0 [7cb0a576] + MPICH_jll v5.0.1+0 [f1f71cc9] + MPItrampoline_jll v5.5.6+0 [9237b28f] + MicrosoftMPI_jll v10.1.4+3 ⌅ [baad4e97] + OCCT_jll v7.7.2+0 [e7412a2a] + Ogg_jll v1.3.6+0 ⌅ [fe0851c0] + OpenMPI_jll v4.1.9+0 [efe28fd5] + OpenSpecFun_jll v0.5.6+0 [91d4177d] + Opus_jll v1.6.1+0 [36c8627f] + Pango_jll v1.58.2+0 [30392449] + Pixman_jll v0.46.4+0 [c0090381] + Qt6Base_jll v6.10.2+2 [629bc702] + Qt6Declarative_jll v6.10.2+2 [ce943373] + Qt6ShaderTools_jll v6.10.2+1 [6de9746b] + Qt6Svg_jll v6.10.2+0 [e99dba38] + Qt6Wayland_jll v6.10.2+1 [f50d1b31] + Rmath_jll v0.5.2+0 ⌅ [a8d0f55d] + SCOTCH_jll v6.1.3+0 [a44049a8] + Vulkan_Loader_jll v1.3.243+0 [a2964d1f] + Wayland_jll v1.24.0+0 ⌅ [02c8fc9c] + XML2_jll v2.13.9+0 [ffd25f8a] + XZ_jll v5.8.3+0 [f67eecfb] + Xorg_libICE_jll v1.1.2+0 [c834827a] + Xorg_libSM_jll v1.2.6+0 [4f6342f7] + Xorg_libX11_jll v1.8.13+0 [0c0b7dd1] + Xorg_libXau_jll v1.0.13+0 [935fb764] + Xorg_libXcursor_jll v1.2.4+0 [a3789734] + Xorg_libXdmcp_jll v1.1.6+0 [1082639a] + Xorg_libXext_jll v1.3.8+0 [d091e8ba] + Xorg_libXfixes_jll v6.0.2+0 [2c808117] + Xorg_libXft_jll v2.3.9+0 [a51aa0fd] + Xorg_libXi_jll v1.8.4+0 [d1454406] + Xorg_libXinerama_jll v1.1.7+0 [ec84b674] + Xorg_libXrandr_jll v1.5.6+0 [ea2f1a96] + Xorg_libXrender_jll v0.9.12+0 [a65dc6b1] + Xorg_libpciaccess_jll v0.19.0+0 [c7cfdc94] + Xorg_libxcb_jll v1.17.1+0 [cc61e674] + Xorg_libxkbfile_jll v1.2.0+0 [e920d4aa] + Xorg_xcb_util_cursor_jll v0.1.6+0 [12413925] + Xorg_xcb_util_image_jll v0.4.1+0 [2def613f] + Xorg_xcb_util_jll v0.4.1+0 [975044d2] + Xorg_xcb_util_keysyms_jll v0.4.1+0 [0d47668e] + Xorg_xcb_util_renderutil_jll v0.3.10+0 [c22f9ab0] + Xorg_xcb_util_wm_jll v0.4.2+0 [35661453] + Xorg_xkbcomp_jll v1.4.7+0 [33bec58e] + Xorg_xkeyboard_config_jll v2.47.0+2 [c5fb5394] + Xorg_xtrans_jll v1.6.0+0 [35ca27e7] + eudev_jll v3.2.14+0 ⌅ [214eeab7] + fzf_jll v0.61.1+0 ⌃ [630162c2] + gmsh_jll v4.13.1+0 [477f73a3] + libaec_jll v1.1.7+0 [a4ae2306] + libaom_jll v3.14.1+0 [0ac62f75] + libass_jll v0.17.5+0 [1183f4f0] + libdecor_jll v0.2.2+0 [8e53e030] + libdrm_jll v2.4.134+0 [2db6ffa8] + libevdev_jll v1.13.4+0 [f638f0a6] + libfdk_aac_jll v2.0.4+0 [36db933b] + libinput_jll v1.28.1+0 [b53b4c65] + libpng_jll v1.6.58+0 [9a156e7d] + libva_jll v2.23.0+0 [f27f6e37] + libvorbis_jll v1.3.8+0 [009596ad] + mtdev_jll v1.1.7+0 [1317d2d5] + oneTBB_jll v2022.3.0+0 ⌅ [1270edf5] + x264_jll v10164.0.1+0 [dfaa095f] + x265_jll v4.1.0+0 [d8fb68d0] + xkbcommon_jll v1.13.0+0 [0dad84c5] + ArgTools v1.2.0 [56f22d72] + Artifacts v1.11.0 [2a0f44e3] + Base64 v1.11.0 [ade2ca70] + Dates v1.11.0 [8ba89e20] + Distributed v1.12.0 [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 [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 [a63ad114] + Mmap v1.11.0 [ca575930] + NetworkOptions v1.3.0 [44cfe95a] + Pkg v1.14.0 [de0858da] + Printf v1.11.0 [3fa0cd96] + REPL v1.11.0 [9a3f8284] + Random v1.11.0 [ea8e919c] + SHA v1.13.0 [9e88b42a] + Serialization v1.11.0 [1a1011a3] + SharedArrays v1.11.0 [6462fe0b] + Sockets v1.11.0 [2f01184e] + SparseArrays v1.13.0 [f489334b] + StyledStrings v1.13.0 [4607b0f0] + SuiteSparse [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 [14a3606d] + MozillaCACerts_jll v2026.8.13 [4536629a] + OpenBLAS_jll v0.3.34+0 [05823500] + OpenLibm_jll v0.8.7+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 ⌃ and ⌅ have new versions available. Those with ⌃ may be upgradable, but those with ⌅ are restricted by compatibility constraints from upgrading. To see why use `status --outdated -m` Building GridapGmsh → `~/.julia/scratchspaces/44cfe95a-1eb2-52ea-b672-e2afdf69b78f/56bcd88698c92c1bacbca36aa82844de776c646e/build.log` Installation completed after 28.38s ################################################################################ # Precompilation # Precompiling PkgEval dependencies... Precompiling package dependencies... Precompiling project... [ Info: WaveSpec initialized: Ready for spectral sea state synthesis. 28.0 s ✓ HydroElasticFEM 1 dependency successfully precompiled in 33 seconds. 370 already precompiled. 1 dependency had output during precompilation: ┌ HydroElasticFEM │ [ Info: WaveSpec initialized: Ready for spectral sea state synthesis. └ Precompilation completed after 84.87s ################################################################################ # Testing # Testing HydroElasticFEM Status `/tmp/jl_CeWsV5/Project.toml` [a93c6f00] DataFrames v1.8.2 [56d4f2e9] Gridap v0.20.9 [3025c34a] GridapGmsh v0.7.4 [e85360b2] HydroElasticFEM v0.1.2 [033835bb] JLD2 v0.6.6 [d96e819e] Parameters v0.13.1 [91a5bcdd] Plots v1.41.7 [908d4cf6] WaveSpec v0.3.1 [37e2e46d] LinearAlgebra v1.14.0 [de0858da] Printf v1.11.0 [2f01184e] SparseArrays v1.13.0 [8dfed614] Test v1.11.0 Status `/tmp/jl_CeWsV5/Manifest.toml` [47edcb42] ADTypes v1.24.0 [621f4979] AbstractFFTs v1.5.0 [1520ce14] AbstractTrees v0.4.5 [7d9f7c33] Accessors v0.1.45 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Info Packages marked with ⌃ and ⌅ have new versions available. Those with ⌃ may be upgradable, but those with ⌅ are restricted by compatibility constraints from upgrading. Testing Running tests... [ Info: WaveSpec initialized: Ready for spectral sea state synthesis. Info : Reading '/home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/Geometry/../fixtures/meshes/tank2d.msh'... Info : 6 nodes Info : 10 elements Info : Done reading '/home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/Geometry/../fixtures/meshes/tank2d.msh' Info : Reading '/home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/Geometry/../fixtures/meshes/tank2d_missing_tags.msh'... Info : 5 nodes Info : 7 elements Info : Done reading '/home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/Geometry/../fixtures/meshes/tank2d_missing_tags.msh' Info : Reading '/home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/Geometry/../fixtures/meshes/tank2d.msh'... Info : 6 nodes Info : 10 elements Info : Done reading '/home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/Geometry/../fixtures/meshes/tank2d.msh' ───────────────────────────────────────────────────────── validate_gmsh_tags: "/home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/Geometry/../fixtures/meshes/tank2d.msh" (dim=2) ───────────────────────────────────────────────────────── Detected physical groups: fluid, free_surface, inlet, outlet, seabed, structure ✓ PRESENT "fluid" ✓ PRESENT "free_surface" ✓ PRESENT "seabed" ✓ PRESENT "inlet" ✓ PRESENT "outlet" ✓ PRESENT "structure" Result: ALL required tags present ✓ ───────────────────────────────────────────────────────── Info : Reading '/home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/Geometry/../fixtures/meshes/tank2d_missing_tags.msh'... Info : 5 nodes Info : 7 elements Info : Done reading '/home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/Geometry/../fixtures/meshes/tank2d_missing_tags.msh' ───────────────────────────────────────────────────────── validate_gmsh_tags: "/home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/Geometry/../fixtures/meshes/tank2d_missing_tags.msh" (dim=2) ───────────────────────────────────────────────────────── Detected physical groups: fluid, inlet, outlet, seabed ✓ PRESENT "fluid" ✗ MISSING "free_surface" ✓ PRESENT "seabed" ✓ PRESENT "inlet" ✓ PRESENT "outlet" ✗ MISSING "structure" Result: MISSING tags — free_surface, structure ───────────────────────────────────────────────────────── ERROR: File not found: "/nonexistent/path/mesh.msh" Info : Reading '/home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/Geometry/../fixtures/meshes/tank2d_missing_tags.msh'... Info : 5 nodes Info : 7 elements Info : Done reading '/home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/Geometry/../fixtures/meshes/tank2d_missing_tags.msh' ───────────────────────────────────────────────────────── validate_gmsh_tags: "/home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/Geometry/../fixtures/meshes/tank2d_missing_tags.msh" (dim=2) ───────────────────────────────────────────────────────── Detected physical groups: fluid, inlet, outlet, seabed ✓ PRESENT "fluid" ✓ PRESENT "seabed" ✓ PRESENT "inlet" ✓ PRESENT "outlet" Result: ALL required tags present ✓ ───────────────────────────────────────────────────────── [MSG] Membrane Properties: [VAL] L = 20.0000 m [VAL] mᵨ = 0.9000 m [VAL] Tᵨ = 98.1000 m3/s2 [VAL] τ = 0.0000 [VAL] ambient_dim = 2 [VAL] manifold_dim = 1 [VAL] 1st Dry Analytical Natural Freq, ωn1 = 1.6400 rad/s [MSG] Beam Properties: [VAL] L = 20.0000 m [VAL] mᵨ = 0.1882 m [VAL] EIᵨ = 325.2195 m5/s2 [VAL] τ = 0.0000 [VAL] 1st Dry Analytical Natural Freq, ωn1 = 2.3248 rad/s [MSG] See free-free vibration frequency formula involving 22.3733 from Wiki. [MSG] Resonator Properties: [VAL] M = 1000.0000 kg [VAL] K = 5900.0000 N/m [VAL] C = 0.0000 Ns/m [VAL] XZ = (10.0000, 0.0000) m [VAL] ωn1 = 2.4290 rad/s [MSG] Fluid Properties: [VAL] ρw = 1025.00 kg/m3 [VAL] g = 9.8100 m/s2 Computing stiffness contribution for RadiationBC on domain dΓout with wavenumber k=0.17175085388369535. Computing stiffness contribution for RadiationBC on domain dΓin with wavenumber k=0.17175085388369535. Computing stiffness contribution for RadiationBC on domain dΓout with wavenumber k=0.17175085388369535. [MSG] Free Surface Properties: [VAL] Density of water, ρw = 1025.00 kg/m3 [VAL] Gravitational acceleration, g = 9.8100 m/s2 [VAL] Stabilisation parameter, βₕ = 0.5000 TimoshenkoBeam → EulerBernoulli thin limit: Error During Test at /home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/BeamPlateConsistencyTests.jl:62 Got exception outside of a @test promotion of types Float64, VectorValue{1, Float64} and VectorValue{1, Float64} failed to change any arguments Stacktrace: [1] error(::String, ::String, ::String) @ Base error.jl:56 [2] sametype_error(input::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}) @ Base promotion.jl:449 [3] not_sametype(x::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}, y::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}) @ Base promotion.jl:443 [4] promote(x::Float64, y::VectorValue{1, Float64}, z::VectorValue{1, Float64}) @ Base promotion.jl:432 [inlined] [5] muladd(a::Float64, b::VectorValue{1, Float64}, c::VectorValue{1, Float64}) @ Base promotion.jl:511 [6] __generic_matvecmul!(::typeof(identity), C::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1121 [7] _generic_matvecmul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1140 [inlined] [8] generic_matvecmul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1074 [inlined] [9] mul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1066 [inlined] [10] _mul!(y::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:74 [inlined] [11] mul!(y::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:71 [inlined] [12] mul!(C::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:281 [inlined] [13] *(A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:61 [inlined] [14] _compute_node_permutations(p::Gridap.ReferenceFEs.ExtrusionPolytope{1}, interior_nodes::Vector{VectorValue{1, Float64}}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:562 [15] compute_own_nodes_permutations(p::Gridap.ReferenceFEs.ExtrusionPolytope{1}, interior_nodes::Vector{VectorValue{1, Float64}}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:445 [16] get_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:15 [17] get_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/LagrangianRefFEs.jl:190 [18] get_face_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:19 [19] get_face_own_dofs_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/LagrangianRefFEs.jl:276 [20] (::Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity})(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:95 [inlined] [21] iterate(::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}) @ Base generator.jl:49 [inlined] [22] _collect(c::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, itr::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}, ::Base.EltypeUnknown, isz::Base.HasShape{1}) @ Base array.jl:859 [23] collect_similar(cont::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, itr::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}) @ Base array.jl:774 [inlined] [24] map(f::Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}, A::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}) @ Base abstractarray.jl:3491 [inlined] [25] Gridap.FESpaces.CellConformity(cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:95 [26] Gridap.FESpaces.CellFE(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, cell_shapefuns::FillArrays.Fill{Gridap.Fields.LinearCombinationFieldVector{Matrix{Float64}, Gridap.Polynomials.MonomialBasis{1, Float64}}, 1, Tuple{Base.OneTo{Int64}}}, cell_dof_basis::FillArrays.Fill{Gridap.ReferenceFEs.LagrangianDofBasis{VectorValue{1, Float64}, Int64}, 1, Tuple{Base.OneTo{Int64}}}, conformity::Gridap.ReferenceFEs.GradConformity) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:220 [27] Gridap.FESpaces.CellFE(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, conformity::Gridap.ReferenceFEs.GradConformity; kwargs::@Kwargs{scale_dof::Bool, global_meshsize::Nothing}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:237 [28] FESpace(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}; conformity::Symbol, trian::Gridap.Geometry.BodyFittedTriangulation{1, 1, CartesianDiscreteModel{1, Float64, typeof(identity)}, CartesianGrid{1, Float64, typeof(identity)}, Gridap.Arrays.IdentityVector{Int64}}, labels::Gridap.Geometry.FaceLabeling, dirichlet_tags::String, dirichlet_masks::Nothing, constraint::Nothing, vector_type::Type, scale_dof::Bool, global_meshsize::Nothing) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:81 [29] FESpace(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}; kwargs::@Kwargs{conformity::Symbol, dirichlet_tags::String, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:20 [30] TestFESpace(::CartesianDiscreteModel{1, Float64, typeof(identity)}, ::Vararg{Any}; kwargs::@Kwargs{conformity::Symbol, dirichlet_tags::String, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:5 [31] top-level scope @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/BeamPlateConsistencyTests.jl:68 [32] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [33] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/BeamPlateConsistencyTests.jl:92 [inlined] KirchhoffLovePlate — simply-supported square, uniform load: Error During Test at /home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/KirchhoffLovePlateTests.jl:146 Got exception outside of a @test promotion of types Float64, VectorValue{2, Float64} and VectorValue{2, Float64} failed to change any arguments Stacktrace: [1] error(::String, ::String, ::String) @ Base error.jl:56 [2] sametype_error(input::Tuple{Float64, VectorValue{2, Float64}, VectorValue{2, Float64}}) @ Base promotion.jl:449 [3] not_sametype(x::Tuple{Float64, VectorValue{2, Float64}, VectorValue{2, Float64}}, y::Tuple{Float64, VectorValue{2, Float64}, VectorValue{2, Float64}}) @ Base promotion.jl:443 [4] promote(x::Float64, y::VectorValue{2, Float64}, z::VectorValue{2, Float64}) @ Base promotion.jl:432 [inlined] [5] muladd(a::Float64, b::VectorValue{2, Float64}, c::VectorValue{2, Float64}) @ Base promotion.jl:511 [6] __generic_matvecmul!(::typeof(identity), C::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1121 [7] _generic_matvecmul!(C::Vector{VectorValue{2, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1140 [inlined] [8] generic_matvecmul!(C::Vector{VectorValue{2, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1074 [inlined] [9] mul!(C::Vector{VectorValue{2, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1066 [inlined] [10] _mul!(y::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:74 [inlined] [11] mul!(y::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:71 [inlined] [12] mul!(C::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:281 [inlined] [13] *(A::Matrix{Float64}, x::Vector{VectorValue{2, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:61 [inlined] [14] _compute_high_order_nodes_dim_d!(nodes::Vector{VectorValue{2, Float64}}, facenodes::Vector{Vector{Int64}}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}, ::Val{1}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:528 [15] _compute_high_order_nodes(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:498 [16] _compute_nodes(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:472 [17] compute_nodes(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:663 [18] _lagrangian_ref_fe(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}, poly_type::Type) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:249 [19] Gridap.ReferenceFEs.LagrangianRefFE(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}; space::Symbol, poly_type::Type) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:222 [20] Gridap.ReferenceFEs.LagrangianRefFE(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, order::Int64; space::Symbol, poly_type::Type) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:359 [21] Gridap.ReferenceFEs.LagrangianRefFE(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, order::Int64) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:355 [inlined] [22] ReferenceFE(polytope::Gridap.ReferenceFEs.ExtrusionPolytope{2}, ::Lagrangian, ::Core.TypeEgal{Float64}, orders::Int64; kwargs::@Kwargs{}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:242 [inlined] [23] ReferenceFE(polytope::Gridap.ReferenceFEs.ExtrusionPolytope{2}, ::Lagrangian, ::Core.TypeEgal{Float64}, orders::Int64) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:235 [24] (::Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}})(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:273 [25] iterate(::Base.Generator{Vector{Polytope{2}}, Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}}) @ Base generator.jl:49 [inlined] [26] _collect(c::Vector{Polytope{2}}, itr::Base.Generator{Vector{Polytope{2}}, Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}}, ::Base.EltypeUnknown, isz::Base.HasShape{1}) @ Base array.jl:859 [27] collect_similar(cont::Vector{Polytope{2}}, itr::Base.Generator{Vector{Polytope{2}}, Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}}) @ Base array.jl:774 [inlined] [28] map(f::Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}, A::Vector{Polytope{2}}) @ Base abstractarray.jl:3491 [inlined] [29] ReferenceFE(::CartesianDiscreteModel{2, Float64, typeof(identity)}, ::Lagrangian, ::DataType, ::Int64; kwargs::@Kwargs{}) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:273 [30] ReferenceFE(::CartesianDiscreteModel{2, Float64, typeof(identity)}, ::Lagrangian, ::DataType, ::Int64) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:270 [inlined] [31] ReferenceFE(trian::CartesianDiscreteModel{2, Float64, typeof(identity)}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:288 [inlined] [32] FESpace(model::CartesianDiscreteModel{2, Float64, typeof(identity)}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}; kwargs::@Kwargs{conformity::Symbol, dirichlet_tags::String, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:19 [33] TestFESpace(::CartesianDiscreteModel{2, Float64, typeof(identity)}, ::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}; kwargs::@Kwargs{conformity::Symbol, dirichlet_tags::String, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:5 [inlined] [34] _build_plate_fe_spaces(model::CartesianDiscreteModel{2, Float64, typeof(identity)}, order::Int64) @ Main ~/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/KirchhoffLovePlateTests.jl:49 [35] _run_kl_plate_simply_supported(; E::Float64, nu::Float64, h_plate::Float64, L::Float64, q::Float64, n::Int64, order::Int64) @ Main ~/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/KirchhoffLovePlateTests.jl:65 [36] top-level scope @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/KirchhoffLovePlateTests.jl:148 [37] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [38] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/KirchhoffLovePlateTests.jl:156 [inlined] KirchhoffLovePlate — mass form integral: Error During Test at /home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/KirchhoffLovePlateTests.jl:205 Got exception outside of a @test promotion of types Float64, VectorValue{2, Float64} and VectorValue{2, Float64} failed to change any arguments Stacktrace: [1] error(::String, ::String, ::String) @ Base error.jl:56 [2] sametype_error(input::Tuple{Float64, VectorValue{2, Float64}, VectorValue{2, Float64}}) @ Base promotion.jl:449 [3] not_sametype(x::Tuple{Float64, VectorValue{2, Float64}, VectorValue{2, Float64}}, y::Tuple{Float64, VectorValue{2, Float64}, VectorValue{2, Float64}}) @ Base promotion.jl:443 [4] promote(x::Float64, y::VectorValue{2, Float64}, z::VectorValue{2, Float64}) @ Base promotion.jl:432 [inlined] [5] muladd(a::Float64, b::VectorValue{2, Float64}, c::VectorValue{2, Float64}) @ Base promotion.jl:511 [6] __generic_matvecmul!(::typeof(identity), C::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1121 [7] _generic_matvecmul!(C::Vector{VectorValue{2, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1140 [inlined] [8] generic_matvecmul!(C::Vector{VectorValue{2, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1074 [inlined] [9] mul!(C::Vector{VectorValue{2, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1066 [inlined] [10] _mul!(y::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:74 [inlined] [11] mul!(y::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:71 [inlined] [12] mul!(C::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:281 [inlined] [13] *(A::Matrix{Float64}, x::Vector{VectorValue{2, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:61 [inlined] [14] _compute_high_order_nodes_dim_d!(nodes::Vector{VectorValue{2, Float64}}, facenodes::Vector{Vector{Int64}}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}, ::Val{1}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:528 [15] _compute_high_order_nodes(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:498 [16] _compute_nodes(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:472 [17] compute_nodes(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:663 [18] _lagrangian_ref_fe(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}, poly_type::Type) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:249 [19] Gridap.ReferenceFEs.LagrangianRefFE(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}; space::Symbol, poly_type::Type) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:222 [20] Gridap.ReferenceFEs.LagrangianRefFE(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, order::Int64; space::Symbol, poly_type::Type) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:359 [21] Gridap.ReferenceFEs.LagrangianRefFE(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, order::Int64) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:355 [inlined] [22] ReferenceFE(polytope::Gridap.ReferenceFEs.ExtrusionPolytope{2}, ::Lagrangian, ::Core.TypeEgal{Float64}, orders::Int64; kwargs::@Kwargs{}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:242 [inlined] [23] ReferenceFE(polytope::Gridap.ReferenceFEs.ExtrusionPolytope{2}, ::Lagrangian, ::Core.TypeEgal{Float64}, orders::Int64) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:235 [24] (::Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}})(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:273 [25] iterate(::Base.Generator{Vector{Polytope{2}}, Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}}) @ Base generator.jl:49 [inlined] [26] _collect(c::Vector{Polytope{2}}, itr::Base.Generator{Vector{Polytope{2}}, Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}}, ::Base.EltypeUnknown, isz::Base.HasShape{1}) @ Base array.jl:859 [27] collect_similar(cont::Vector{Polytope{2}}, itr::Base.Generator{Vector{Polytope{2}}, Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}}) @ Base array.jl:774 [inlined] [28] map(f::Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}, A::Vector{Polytope{2}}) @ Base abstractarray.jl:3491 [inlined] [29] ReferenceFE(::CartesianDiscreteModel{2, Float64, typeof(identity)}, ::Lagrangian, ::DataType, ::Int64; kwargs::@Kwargs{}) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:273 [30] ReferenceFE(::CartesianDiscreteModel{2, Float64, typeof(identity)}, ::Lagrangian, ::DataType, ::Int64) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:270 [inlined] [31] ReferenceFE(trian::CartesianDiscreteModel{2, Float64, typeof(identity)}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:288 [inlined] [32] FESpace(model::CartesianDiscreteModel{2, Float64, typeof(identity)}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}; kwargs::@Kwargs{conformity::Symbol, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:19 [33] TestFESpace(::CartesianDiscreteModel{2, Float64, typeof(identity)}, ::Vararg{Any}; kwargs::@Kwargs{conformity::Symbol, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:5 [34] top-level scope @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/KirchhoffLovePlateTests.jl:208 [35] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [36] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/KirchhoffLovePlateTests.jl:214 [inlined] [MSG] Kirchhoff-Love Plate: [VAL] E = 1.190000e+10 Pa [VAL] ν = 0.1300 [VAL] hb = 2.0000 m [VAL] ρ = 1025.00 kg/m3 [VAL] ρb = 256.25 kg/m3 [VAL] g = 9.8100 m/s2 [VAL] ambient_dim = 3 [VAL] manifold_dim = 2 KirchhoffLovePlate — Hessian SIPG: stiffness matrix symmetry: Error During Test at /home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/KirchhoffLovePlateTests.jl:245 Got exception outside of a @test promotion of types Float64, VectorValue{2, Float64} and VectorValue{2, Float64} failed to change any arguments Stacktrace: [1] error(::String, ::String, ::String) @ Base error.jl:56 [2] sametype_error(input::Tuple{Float64, VectorValue{2, Float64}, VectorValue{2, Float64}}) @ Base promotion.jl:449 [3] not_sametype(x::Tuple{Float64, VectorValue{2, Float64}, VectorValue{2, Float64}}, y::Tuple{Float64, VectorValue{2, Float64}, VectorValue{2, Float64}}) @ Base promotion.jl:443 [4] promote(x::Float64, y::VectorValue{2, Float64}, z::VectorValue{2, Float64}) @ Base promotion.jl:432 [inlined] [5] muladd(a::Float64, b::VectorValue{2, Float64}, c::VectorValue{2, Float64}) @ Base promotion.jl:511 [6] __generic_matvecmul!(::typeof(identity), C::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1121 [7] _generic_matvecmul!(C::Vector{VectorValue{2, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1140 [inlined] [8] generic_matvecmul!(C::Vector{VectorValue{2, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1074 [inlined] [9] mul!(C::Vector{VectorValue{2, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1066 [inlined] [10] _mul!(y::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:74 [inlined] [11] mul!(y::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:71 [inlined] [12] mul!(C::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:281 [inlined] [13] *(A::Matrix{Float64}, x::Vector{VectorValue{2, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:61 [inlined] [14] _compute_high_order_nodes_dim_d!(nodes::Vector{VectorValue{2, Float64}}, facenodes::Vector{Vector{Int64}}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}, ::Val{1}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:528 [15] _compute_high_order_nodes(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:498 [16] _compute_nodes(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:472 [17] compute_nodes(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:663 [18] _lagrangian_ref_fe(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}, poly_type::Type) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:249 [19] Gridap.ReferenceFEs.LagrangianRefFE(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}; space::Symbol, poly_type::Type) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:222 [20] Gridap.ReferenceFEs.LagrangianRefFE(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, order::Int64; space::Symbol, poly_type::Type) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:359 [21] Gridap.ReferenceFEs.LagrangianRefFE(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, order::Int64) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:355 [inlined] [22] ReferenceFE(polytope::Gridap.ReferenceFEs.ExtrusionPolytope{2}, ::Lagrangian, ::Core.TypeEgal{Float64}, orders::Int64; kwargs::@Kwargs{}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:242 [inlined] [23] ReferenceFE(polytope::Gridap.ReferenceFEs.ExtrusionPolytope{2}, ::Lagrangian, ::Core.TypeEgal{Float64}, orders::Int64) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:235 [24] (::Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}})(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:273 [25] iterate(::Base.Generator{Vector{Polytope{2}}, Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}}) @ Base generator.jl:49 [inlined] [26] _collect(c::Vector{Polytope{2}}, itr::Base.Generator{Vector{Polytope{2}}, Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}}, ::Base.EltypeUnknown, isz::Base.HasShape{1}) @ Base array.jl:859 [27] collect_similar(cont::Vector{Polytope{2}}, itr::Base.Generator{Vector{Polytope{2}}, Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}}) @ Base array.jl:774 [inlined] [28] map(f::Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}, A::Vector{Polytope{2}}) @ Base abstractarray.jl:3491 [inlined] [29] ReferenceFE(::CartesianDiscreteModel{2, Float64, typeof(identity)}, ::Lagrangian, ::DataType, ::Int64; kwargs::@Kwargs{}) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:273 [30] ReferenceFE(::CartesianDiscreteModel{2, Float64, typeof(identity)}, ::Lagrangian, ::DataType, ::Int64) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:270 [inlined] [31] ReferenceFE(trian::CartesianDiscreteModel{2, Float64, typeof(identity)}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:288 [inlined] [32] FESpace(model::CartesianDiscreteModel{2, Float64, typeof(identity)}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}; kwargs::@Kwargs{conformity::Symbol, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:19 [33] TestFESpace(::CartesianDiscreteModel{2, Float64, typeof(identity)}, ::Vararg{Any}; kwargs::@Kwargs{conformity::Symbol, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:5 [34] top-level scope @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/KirchhoffLovePlateTests.jl:249 [35] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [36] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/KirchhoffLovePlateTests.jl:254 [inlined] KirchhoffLovePlate — Hessian SIPG: ν=0 simply-supported: Error During Test at /home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/KirchhoffLovePlateTests.jl:278 Got exception outside of a @test promotion of types Float64, VectorValue{2, Float64} and VectorValue{2, Float64} failed to change any arguments Stacktrace: [1] error(::String, ::String, ::String) @ Base error.jl:56 [2] sametype_error(input::Tuple{Float64, VectorValue{2, Float64}, VectorValue{2, Float64}}) @ Base promotion.jl:449 [3] not_sametype(x::Tuple{Float64, VectorValue{2, Float64}, VectorValue{2, Float64}}, y::Tuple{Float64, VectorValue{2, Float64}, VectorValue{2, Float64}}) @ Base promotion.jl:443 [4] promote(x::Float64, y::VectorValue{2, Float64}, z::VectorValue{2, Float64}) @ Base promotion.jl:432 [inlined] [5] muladd(a::Float64, b::VectorValue{2, Float64}, c::VectorValue{2, Float64}) @ Base promotion.jl:511 [6] __generic_matvecmul!(::typeof(identity), C::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1121 [7] _generic_matvecmul!(C::Vector{VectorValue{2, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1140 [inlined] [8] generic_matvecmul!(C::Vector{VectorValue{2, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1074 [inlined] [9] mul!(C::Vector{VectorValue{2, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1066 [inlined] [10] _mul!(y::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:74 [inlined] [11] mul!(y::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:71 [inlined] [12] mul!(C::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:281 [inlined] [13] *(A::Matrix{Float64}, x::Vector{VectorValue{2, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:61 [inlined] [14] _compute_high_order_nodes_dim_d!(nodes::Vector{VectorValue{2, Float64}}, facenodes::Vector{Vector{Int64}}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}, ::Val{1}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:528 [15] _compute_high_order_nodes(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:498 [16] _compute_nodes(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:472 [17] compute_nodes(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:663 [18] _lagrangian_ref_fe(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}, poly_type::Type) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:249 [19] Gridap.ReferenceFEs.LagrangianRefFE(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}; space::Symbol, poly_type::Type) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:222 [20] Gridap.ReferenceFEs.LagrangianRefFE(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, order::Int64; space::Symbol, poly_type::Type) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:359 [21] Gridap.ReferenceFEs.LagrangianRefFE(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, order::Int64) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:355 [inlined] [22] ReferenceFE(polytope::Gridap.ReferenceFEs.ExtrusionPolytope{2}, ::Lagrangian, ::Core.TypeEgal{Float64}, orders::Int64; kwargs::@Kwargs{}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:242 [inlined] [23] ReferenceFE(polytope::Gridap.ReferenceFEs.ExtrusionPolytope{2}, ::Lagrangian, ::Core.TypeEgal{Float64}, orders::Int64) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:235 [24] (::Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}})(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:273 [25] iterate(::Base.Generator{Vector{Polytope{2}}, Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}}) @ Base generator.jl:49 [inlined] [26] _collect(c::Vector{Polytope{2}}, itr::Base.Generator{Vector{Polytope{2}}, Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}}, ::Base.EltypeUnknown, isz::Base.HasShape{1}) @ Base array.jl:859 [27] collect_similar(cont::Vector{Polytope{2}}, itr::Base.Generator{Vector{Polytope{2}}, Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}}) @ Base array.jl:774 [inlined] [28] map(f::Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}, A::Vector{Polytope{2}}) @ Base abstractarray.jl:3491 [inlined] [29] ReferenceFE(::CartesianDiscreteModel{2, Float64, typeof(identity)}, ::Lagrangian, ::DataType, ::Int64; kwargs::@Kwargs{}) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:273 [30] ReferenceFE(::CartesianDiscreteModel{2, Float64, typeof(identity)}, ::Lagrangian, ::DataType, ::Int64) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:270 [inlined] [31] ReferenceFE(trian::CartesianDiscreteModel{2, Float64, typeof(identity)}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:288 [inlined] [32] FESpace(model::CartesianDiscreteModel{2, Float64, typeof(identity)}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}; kwargs::@Kwargs{conformity::Symbol, dirichlet_tags::String, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:19 [33] TestFESpace(::CartesianDiscreteModel{2, Float64, typeof(identity)}, ::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}; kwargs::@Kwargs{conformity::Symbol, dirichlet_tags::String, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:5 [inlined] [34] _build_plate_fe_spaces(model::CartesianDiscreteModel{2, Float64, typeof(identity)}, order::Int64) @ Main ~/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/KirchhoffLovePlateTests.jl:49 [35] _run_kl_plate_simply_supported(; E::Float64, nu::Float64, h_plate::Float64, L::Float64, q::Float64, n::Int64, order::Int64) @ Main ~/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/KirchhoffLovePlateTests.jl:65 [36] top-level scope @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/KirchhoffLovePlateTests.jl:282 [37] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [38] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/KirchhoffLovePlateTests.jl:289 [inlined] KirchhoffLovePlate — Hessian SIPG: p-refinement: Error During Test at /home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/KirchhoffLovePlateTests.jl:295 Got exception outside of a @test promotion of types Float64, VectorValue{2, Float64} and VectorValue{2, Float64} failed to change any arguments Stacktrace: [1] error(::String, ::String, ::String) @ Base error.jl:56 [2] sametype_error(input::Tuple{Float64, VectorValue{2, Float64}, VectorValue{2, Float64}}) @ Base promotion.jl:449 [3] not_sametype(x::Tuple{Float64, VectorValue{2, Float64}, VectorValue{2, Float64}}, y::Tuple{Float64, VectorValue{2, Float64}, VectorValue{2, Float64}}) @ Base promotion.jl:443 [4] promote(x::Float64, y::VectorValue{2, Float64}, z::VectorValue{2, Float64}) @ Base promotion.jl:432 [inlined] [5] muladd(a::Float64, b::VectorValue{2, Float64}, c::VectorValue{2, Float64}) @ Base promotion.jl:511 [6] __generic_matvecmul!(::typeof(identity), C::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1121 [7] _generic_matvecmul!(C::Vector{VectorValue{2, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1140 [inlined] [8] generic_matvecmul!(C::Vector{VectorValue{2, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1074 [inlined] [9] mul!(C::Vector{VectorValue{2, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1066 [inlined] [10] _mul!(y::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:74 [inlined] [11] mul!(y::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:71 [inlined] [12] mul!(C::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:281 [inlined] [13] *(A::Matrix{Float64}, x::Vector{VectorValue{2, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:61 [inlined] [14] _compute_high_order_nodes_dim_d!(nodes::Vector{VectorValue{2, Float64}}, facenodes::Vector{Vector{Int64}}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}, ::Val{1}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:528 [15] _compute_high_order_nodes(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:498 [16] _compute_nodes(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:472 [17] compute_nodes(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:663 [18] _lagrangian_ref_fe(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}, poly_type::Type) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:249 [19] Gridap.ReferenceFEs.LagrangianRefFE(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}; space::Symbol, poly_type::Type) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:222 [20] Gridap.ReferenceFEs.LagrangianRefFE(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, order::Int64; space::Symbol, poly_type::Type) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:359 [21] Gridap.ReferenceFEs.LagrangianRefFE(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, order::Int64) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:355 [inlined] [22] ReferenceFE(polytope::Gridap.ReferenceFEs.ExtrusionPolytope{2}, ::Lagrangian, ::Core.TypeEgal{Float64}, orders::Int64; kwargs::@Kwargs{}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:242 [inlined] [23] ReferenceFE(polytope::Gridap.ReferenceFEs.ExtrusionPolytope{2}, ::Lagrangian, ::Core.TypeEgal{Float64}, orders::Int64) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:235 [24] (::Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}})(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:273 [25] iterate(::Base.Generator{Vector{Polytope{2}}, Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}}) @ Base generator.jl:49 [inlined] [26] _collect(c::Vector{Polytope{2}}, itr::Base.Generator{Vector{Polytope{2}}, Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}}, ::Base.EltypeUnknown, isz::Base.HasShape{1}) @ Base array.jl:859 [27] collect_similar(cont::Vector{Polytope{2}}, itr::Base.Generator{Vector{Polytope{2}}, Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}}) @ Base array.jl:774 [inlined] [28] map(f::Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}, A::Vector{Polytope{2}}) @ Base abstractarray.jl:3491 [inlined] [29] ReferenceFE(::CartesianDiscreteModel{2, Float64, typeof(identity)}, ::Lagrangian, ::DataType, ::Int64; kwargs::@Kwargs{}) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:273 [30] ReferenceFE(::CartesianDiscreteModel{2, Float64, typeof(identity)}, ::Lagrangian, ::DataType, ::Int64) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:270 [inlined] [31] ReferenceFE(trian::CartesianDiscreteModel{2, Float64, typeof(identity)}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:288 [inlined] [32] FESpace(model::CartesianDiscreteModel{2, Float64, typeof(identity)}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}; kwargs::@Kwargs{conformity::Symbol, dirichlet_tags::String, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:19 [33] TestFESpace(::CartesianDiscreteModel{2, Float64, typeof(identity)}, ::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}; kwargs::@Kwargs{conformity::Symbol, dirichlet_tags::String, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:5 [inlined] [34] _build_plate_fe_spaces(model::CartesianDiscreteModel{2, Float64, typeof(identity)}, order::Int64) @ Main ~/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/KirchhoffLovePlateTests.jl:49 [35] _run_kl_plate_simply_supported(; E::Float64, nu::Float64, h_plate::Float64, L::Float64, q::Float64, n::Int64, order::Int64) @ Main ~/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/KirchhoffLovePlateTests.jl:65 [36] top-level scope @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/KirchhoffLovePlateTests.jl:297 [37] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [38] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/KirchhoffLovePlateTests.jl:302 [inlined] [MSG] TimoshenkoBeam Properties: [VAL] E = 7.0000e+10 Pa [VAL] ν = 0.3000 [VAL] h_beam = 0.1000 m [VAL] b_beam = 0.0500 m [VAL] ρ_s = 2700.0000 kg/m³ [VAL] ρ_w = 1025.0000 kg/m³ [VAL] κ = 0.8333 [VAL] EI = 2.9167e+05 N·m² [VAL] κGA = 1.1218e+08 N TimoshenkoBeam — combined bending+shear (h/L = 0.1): Error During Test at /home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/TimoshenkoBeamTests.jl:146 Got exception outside of a @test promotion of types Float64, VectorValue{1, Float64} and VectorValue{1, Float64} failed to change any arguments Stacktrace: [1] error(::String, ::String, ::String) @ Base error.jl:56 [2] sametype_error(input::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}) @ Base promotion.jl:449 [3] not_sametype(x::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}, y::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}) @ Base promotion.jl:443 [4] promote(x::Float64, y::VectorValue{1, Float64}, z::VectorValue{1, Float64}) @ Base promotion.jl:432 [inlined] [5] muladd(a::Float64, b::VectorValue{1, Float64}, c::VectorValue{1, Float64}) @ Base promotion.jl:511 [6] __generic_matvecmul!(::typeof(identity), C::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1121 [7] _generic_matvecmul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1140 [inlined] [8] generic_matvecmul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1074 [inlined] [9] mul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1066 [inlined] [10] _mul!(y::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:74 [inlined] [11] mul!(y::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:71 [inlined] [12] mul!(C::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:281 [inlined] [13] *(A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:61 [inlined] [14] _compute_node_permutations(p::Gridap.ReferenceFEs.ExtrusionPolytope{1}, interior_nodes::Vector{VectorValue{1, Float64}}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:562 [15] compute_own_nodes_permutations(p::Gridap.ReferenceFEs.ExtrusionPolytope{1}, interior_nodes::Vector{VectorValue{1, Float64}}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:445 [16] get_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:15 [17] get_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/LagrangianRefFEs.jl:190 [18] get_face_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:19 [19] get_face_own_dofs_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/LagrangianRefFEs.jl:276 [20] (::Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity})(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:95 [inlined] [21] iterate(::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}) @ Base generator.jl:49 [inlined] [22] _collect(c::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, itr::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}, ::Base.EltypeUnknown, isz::Base.HasShape{1}) @ Base array.jl:859 [23] collect_similar(cont::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, itr::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}) @ Base array.jl:774 [inlined] [24] map(f::Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}, A::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}) @ Base abstractarray.jl:3491 [inlined] [25] CellConformity(cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:95 [26] CellFE(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, cell_shapefuns::FillArrays.Fill{Gridap.Fields.LinearCombinationFieldVector{Matrix{Float64}, Gridap.Polynomials.MonomialBasis{1, Float64}}, 1, Tuple{Base.OneTo{Int64}}}, cell_dof_basis::FillArrays.Fill{Gridap.ReferenceFEs.LagrangianDofBasis{VectorValue{1, Float64}, Int64}, 1, Tuple{Base.OneTo{Int64}}}, conformity::Gridap.ReferenceFEs.GradConformity) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:220 [27] CellFE(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, conformity::Gridap.ReferenceFEs.GradConformity; kwargs::@Kwargs{scale_dof::Bool, global_meshsize::Nothing}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:237 [28] FESpace(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}; conformity::Symbol, trian::BodyFittedTriangulation{1, 1, CartesianDiscreteModel{1, Float64, typeof(identity)}, CartesianGrid{1, Float64, typeof(identity)}, Gridap.Arrays.IdentityVector{Int64}}, labels::FaceLabeling, dirichlet_tags::String, dirichlet_masks::Nothing, constraint::Nothing, vector_type::Type, scale_dof::Bool, global_meshsize::Nothing) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:81 [29] FESpace(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}; kwargs::@Kwargs{conformity::Symbol, dirichlet_tags::String, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:20 [30] TestFESpace(::CartesianDiscreteModel{1, Float64, typeof(identity)}, ::Vararg{Any}; kwargs::@Kwargs{conformity::Symbol, dirichlet_tags::String, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:5 [31] _run_timoshenko_ss(; E::Float64, ν::Float64, h_beam::Float64, b_beam::Float64, κ::Float64, L::Float64, q::Float64, n::Int64, order_w::Int64, order_θ::Int64) @ Main ~/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/TimoshenkoBeamTests.jl:39 [32] top-level scope @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/TimoshenkoBeamTests.jl:148 [33] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [34] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/TimoshenkoBeamTests.jl:161 [inlined] TimoshenkoBeam — thin-limit convergence to Euler-Bernoulli (h/L = 0.01): Error During Test at /home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/TimoshenkoBeamTests.jl:169 Got exception outside of a @test promotion of types Float64, VectorValue{1, Float64} and VectorValue{1, Float64} failed to change any arguments Stacktrace: [1] error(::String, ::String, ::String) @ Base error.jl:56 [2] sametype_error(input::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}) @ Base promotion.jl:449 [3] not_sametype(x::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}, y::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}) @ Base promotion.jl:443 [4] promote(x::Float64, y::VectorValue{1, Float64}, z::VectorValue{1, Float64}) @ Base promotion.jl:432 [inlined] [5] muladd(a::Float64, b::VectorValue{1, Float64}, c::VectorValue{1, Float64}) @ Base promotion.jl:511 [6] __generic_matvecmul!(::typeof(identity), C::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1121 [7] _generic_matvecmul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1140 [inlined] [8] generic_matvecmul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1074 [inlined] [9] mul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1066 [inlined] [10] _mul!(y::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:74 [inlined] [11] mul!(y::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:71 [inlined] [12] mul!(C::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:281 [inlined] [13] *(A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:61 [inlined] [14] _compute_node_permutations(p::Gridap.ReferenceFEs.ExtrusionPolytope{1}, interior_nodes::Vector{VectorValue{1, Float64}}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:562 [15] compute_own_nodes_permutations(p::Gridap.ReferenceFEs.ExtrusionPolytope{1}, interior_nodes::Vector{VectorValue{1, Float64}}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:445 [16] get_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:15 [17] get_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/LagrangianRefFEs.jl:190 [18] get_face_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:19 [19] get_face_own_dofs_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/LagrangianRefFEs.jl:276 [20] (::Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity})(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:95 [inlined] [21] iterate(::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}) @ Base generator.jl:49 [inlined] [22] _collect(c::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, itr::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}, ::Base.EltypeUnknown, isz::Base.HasShape{1}) @ Base array.jl:859 [23] collect_similar(cont::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, itr::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}) @ Base array.jl:774 [inlined] [24] map(f::Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}, A::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}) @ Base abstractarray.jl:3491 [inlined] [25] CellConformity(cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:95 [26] CellFE(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, cell_shapefuns::FillArrays.Fill{Gridap.Fields.LinearCombinationFieldVector{Matrix{Float64}, Gridap.Polynomials.MonomialBasis{1, Float64}}, 1, Tuple{Base.OneTo{Int64}}}, cell_dof_basis::FillArrays.Fill{Gridap.ReferenceFEs.LagrangianDofBasis{VectorValue{1, Float64}, Int64}, 1, Tuple{Base.OneTo{Int64}}}, conformity::Gridap.ReferenceFEs.GradConformity) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:220 [27] CellFE(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, conformity::Gridap.ReferenceFEs.GradConformity; kwargs::@Kwargs{scale_dof::Bool, global_meshsize::Nothing}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:237 [28] FESpace(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}; conformity::Symbol, trian::BodyFittedTriangulation{1, 1, CartesianDiscreteModel{1, Float64, typeof(identity)}, CartesianGrid{1, Float64, typeof(identity)}, Gridap.Arrays.IdentityVector{Int64}}, labels::FaceLabeling, dirichlet_tags::String, dirichlet_masks::Nothing, constraint::Nothing, vector_type::Type, scale_dof::Bool, global_meshsize::Nothing) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:81 [29] FESpace(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}; kwargs::@Kwargs{conformity::Symbol, dirichlet_tags::String, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:20 [30] TestFESpace(::CartesianDiscreteModel{1, Float64, typeof(identity)}, ::Vararg{Any}; kwargs::@Kwargs{conformity::Symbol, dirichlet_tags::String, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:5 [31] _run_timoshenko_ss(; E::Float64, ν::Float64, h_beam::Float64, b_beam::Float64, κ::Float64, L::Float64, q::Float64, n::Int64, order_w::Int64, order_θ::Int64) @ Main ~/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/TimoshenkoBeamTests.jl:39 [32] top-level scope @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/TimoshenkoBeamTests.jl:171 [33] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [34] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/TimoshenkoBeamTests.jl:181 [inlined] TimoshenkoBeam — locking-free with mixed interpolation (h/L = 0.001): Error During Test at /home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/TimoshenkoBeamTests.jl:189 Got exception outside of a @test promotion of types Float64, VectorValue{1, Float64} and VectorValue{1, Float64} failed to change any arguments Stacktrace: [1] error(::String, ::String, ::String) @ Base error.jl:56 [2] sametype_error(input::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}) @ Base promotion.jl:449 [3] not_sametype(x::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}, y::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}) @ Base promotion.jl:443 [4] promote(x::Float64, y::VectorValue{1, Float64}, z::VectorValue{1, Float64}) @ Base promotion.jl:432 [inlined] [5] muladd(a::Float64, b::VectorValue{1, Float64}, c::VectorValue{1, Float64}) @ Base promotion.jl:511 [6] __generic_matvecmul!(::typeof(identity), C::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1121 [7] _generic_matvecmul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1140 [inlined] [8] generic_matvecmul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1074 [inlined] [9] mul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1066 [inlined] [10] _mul!(y::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:74 [inlined] [11] mul!(y::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:71 [inlined] [12] mul!(C::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:281 [inlined] [13] *(A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:61 [inlined] [14] _compute_node_permutations(p::Gridap.ReferenceFEs.ExtrusionPolytope{1}, interior_nodes::Vector{VectorValue{1, Float64}}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:562 [15] compute_own_nodes_permutations(p::Gridap.ReferenceFEs.ExtrusionPolytope{1}, interior_nodes::Vector{VectorValue{1, Float64}}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:445 [16] get_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:15 [17] get_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/LagrangianRefFEs.jl:190 [18] get_face_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:19 [19] get_face_own_dofs_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/LagrangianRefFEs.jl:276 [20] (::Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity})(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:95 [inlined] [21] iterate(::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}) @ Base generator.jl:49 [inlined] [22] _collect(c::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, itr::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}, ::Base.EltypeUnknown, isz::Base.HasShape{1}) @ Base array.jl:859 [23] collect_similar(cont::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, itr::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}) @ Base array.jl:774 [inlined] [24] map(f::Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}, A::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}) @ Base abstractarray.jl:3491 [inlined] [25] CellConformity(cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:95 [26] CellFE(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, cell_shapefuns::FillArrays.Fill{Gridap.Fields.LinearCombinationFieldVector{Matrix{Float64}, Gridap.Polynomials.MonomialBasis{1, Float64}}, 1, Tuple{Base.OneTo{Int64}}}, cell_dof_basis::FillArrays.Fill{Gridap.ReferenceFEs.LagrangianDofBasis{VectorValue{1, Float64}, Int64}, 1, Tuple{Base.OneTo{Int64}}}, conformity::Gridap.ReferenceFEs.GradConformity) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:220 [27] CellFE(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, conformity::Gridap.ReferenceFEs.GradConformity; kwargs::@Kwargs{scale_dof::Bool, global_meshsize::Nothing}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:237 [28] FESpace(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}; conformity::Symbol, trian::BodyFittedTriangulation{1, 1, CartesianDiscreteModel{1, Float64, typeof(identity)}, CartesianGrid{1, Float64, typeof(identity)}, Gridap.Arrays.IdentityVector{Int64}}, labels::FaceLabeling, dirichlet_tags::String, dirichlet_masks::Nothing, constraint::Nothing, vector_type::Type, scale_dof::Bool, global_meshsize::Nothing) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:81 [29] FESpace(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}; kwargs::@Kwargs{conformity::Symbol, dirichlet_tags::String, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:20 [30] TestFESpace(::CartesianDiscreteModel{1, Float64, typeof(identity)}, ::Vararg{Any}; kwargs::@Kwargs{conformity::Symbol, dirichlet_tags::String, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:5 [31] _run_timoshenko_ss(; E::Float64, ν::Float64, h_beam::Float64, b_beam::Float64, κ::Float64, L::Float64, q::Float64, n::Int64, order_w::Int64, order_θ::Int64) @ Main ~/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/TimoshenkoBeamTests.jl:39 [32] top-level scope @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/TimoshenkoBeamTests.jl:192 [33] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [34] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/TimoshenkoBeamTests.jl:202 [inlined] TimoshenkoBeam — mass form (partition-of-unity): Error During Test at /home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/TimoshenkoBeamTests.jl:212 Got exception outside of a @test promotion of types Float64, VectorValue{1, Float64} and VectorValue{1, Float64} failed to change any arguments Stacktrace: [1] error(::String, ::String, ::String) @ Base error.jl:56 [2] sametype_error(input::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}) @ Base promotion.jl:449 [3] not_sametype(x::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}, y::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}) @ Base promotion.jl:443 [4] promote(x::Float64, y::VectorValue{1, Float64}, z::VectorValue{1, Float64}) @ Base promotion.jl:432 [inlined] [5] muladd(a::Float64, b::VectorValue{1, Float64}, c::VectorValue{1, Float64}) @ Base promotion.jl:511 [6] __generic_matvecmul!(::typeof(identity), C::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1121 [7] _generic_matvecmul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1140 [inlined] [8] generic_matvecmul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1074 [inlined] [9] mul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1066 [inlined] [10] _mul!(y::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:74 [inlined] [11] mul!(y::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:71 [inlined] [12] mul!(C::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:281 [inlined] [13] *(A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:61 [inlined] [14] _compute_node_permutations(p::Gridap.ReferenceFEs.ExtrusionPolytope{1}, interior_nodes::Vector{VectorValue{1, Float64}}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:562 [15] compute_own_nodes_permutations(p::Gridap.ReferenceFEs.ExtrusionPolytope{1}, interior_nodes::Vector{VectorValue{1, Float64}}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:445 [16] get_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:15 [17] get_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/LagrangianRefFEs.jl:190 [18] get_face_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:19 [19] get_face_own_dofs_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/LagrangianRefFEs.jl:276 [20] (::Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity})(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:95 [inlined] [21] iterate(::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}) @ Base generator.jl:49 [inlined] [22] _collect(c::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, itr::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}, ::Base.EltypeUnknown, isz::Base.HasShape{1}) @ Base array.jl:859 [23] collect_similar(cont::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, itr::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}) @ Base array.jl:774 [inlined] [24] map(f::Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}, A::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}) @ Base abstractarray.jl:3491 [inlined] [25] CellConformity(cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:95 [26] CellFE(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, cell_shapefuns::FillArrays.Fill{Gridap.Fields.LinearCombinationFieldVector{Matrix{Float64}, Gridap.Polynomials.MonomialBasis{1, Float64}}, 1, Tuple{Base.OneTo{Int64}}}, cell_dof_basis::FillArrays.Fill{Gridap.ReferenceFEs.LagrangianDofBasis{VectorValue{1, Float64}, Int64}, 1, Tuple{Base.OneTo{Int64}}}, conformity::Gridap.ReferenceFEs.GradConformity) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:220 [27] CellFE(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, conformity::Gridap.ReferenceFEs.GradConformity; kwargs::@Kwargs{scale_dof::Bool, global_meshsize::Nothing}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:237 [28] FESpace(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}; conformity::Symbol, trian::BodyFittedTriangulation{1, 1, CartesianDiscreteModel{1, Float64, typeof(identity)}, CartesianGrid{1, Float64, typeof(identity)}, Gridap.Arrays.IdentityVector{Int64}}, labels::FaceLabeling, dirichlet_tags::Vector{Int64}, dirichlet_masks::Nothing, constraint::Nothing, vector_type::Type, scale_dof::Bool, global_meshsize::Nothing) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:81 [29] FESpace(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}; kwargs::@Kwargs{conformity::Symbol, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:20 [30] TestFESpace(::CartesianDiscreteModel{1, Float64, typeof(identity)}, ::Vararg{Any}; kwargs::@Kwargs{conformity::Symbol, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:5 [31] top-level scope @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/TimoshenkoBeamTests.jl:216 [32] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [33] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/TimoshenkoBeamTests.jl:239 [inlined] build_fe_spaces — beam with Dirichlet: Error During Test at /home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/Simulation/FESpaceAssemblyTests.jl:118 Got exception outside of a @test promotion of types Float64, VectorValue{1, Float64} and VectorValue{1, Float64} failed to change any arguments Stacktrace: [1] error(::String, ::String, ::String) @ Base error.jl:56 [2] sametype_error(input::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}) @ Base promotion.jl:449 [3] not_sametype(x::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}, y::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}) @ Base promotion.jl:443 [4] promote(x::Float64, y::VectorValue{1, Float64}, z::VectorValue{1, Float64}) @ Base promotion.jl:432 [inlined] [5] muladd(a::Float64, b::VectorValue{1, Float64}, c::VectorValue{1, Float64}) @ Base promotion.jl:511 [6] __generic_matvecmul!(::typeof(identity), C::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1121 [7] _generic_matvecmul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1140 [inlined] [8] generic_matvecmul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1074 [inlined] [9] mul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1066 [inlined] [10] _mul!(y::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:74 [inlined] [11] mul!(y::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:71 [inlined] [12] mul!(C::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:281 [inlined] [13] *(A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:61 [inlined] [14] _compute_node_permutations(p::Gridap.ReferenceFEs.ExtrusionPolytope{1}, interior_nodes::Vector{VectorValue{1, Float64}}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:562 [15] compute_own_nodes_permutations(p::Gridap.ReferenceFEs.ExtrusionPolytope{1}, interior_nodes::Vector{VectorValue{1, Float64}}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:445 [16] get_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:15 [17] get_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/LagrangianRefFEs.jl:190 [18] get_face_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:19 [19] get_face_own_dofs_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/LagrangianRefFEs.jl:276 [20] (::Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity})(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:95 [inlined] [21] iterate(::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}) @ Base generator.jl:49 [inlined] [22] _collect(c::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, itr::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}, ::Base.EltypeUnknown, isz::Base.HasShape{1}) @ Base array.jl:859 [23] collect_similar(cont::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, itr::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}) @ Base array.jl:774 [inlined] [24] map(f::Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}, A::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}) @ Base abstractarray.jl:3491 [inlined] [25] CellConformity(cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:95 [26] CellFE(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, cell_shapefuns::FillArrays.Fill{Gridap.Fields.LinearCombinationFieldVector{Matrix{Float64}, Gridap.Polynomials.MonomialBasis{1, Float64}}, 1, Tuple{Base.OneTo{Int64}}}, cell_dof_basis::FillArrays.Fill{Gridap.ReferenceFEs.LagrangianDofBasis{VectorValue{1, Float64}, Int64}, 1, Tuple{Base.OneTo{Int64}}}, conformity::Gridap.ReferenceFEs.GradConformity) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:220 [27] CellFE(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, conformity::Gridap.ReferenceFEs.GradConformity; kwargs::@Kwargs{scale_dof::Bool, global_meshsize::Nothing}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:237 [28] FESpace(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}; conformity::Symbol, trian::BodyFittedTriangulation{1, 1, CartesianDiscreteModel{1, Float64, typeof(identity)}, CartesianGrid{1, Float64, typeof(identity)}, Gridap.Arrays.IdentityVector{Int64}}, labels::FaceLabeling, dirichlet_tags::String, dirichlet_masks::Nothing, constraint::Nothing, vector_type::Type, scale_dof::Bool, global_meshsize::Nothing) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:81 [29] FESpace(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}; kwargs::@Kwargs{trian::BodyFittedTriangulation{1, 1, CartesianDiscreteModel{1, Float64, typeof(identity)}, CartesianGrid{1, Float64, typeof(identity)}, Gridap.Arrays.IdentityVector{Int64}}, conformity::Symbol, vector_type::DataType, dirichlet_tags::String}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:20 [30] FESpace(t::BodyFittedTriangulation{1, 1, CartesianDiscreteModel{1, Float64, typeof(identity)}, CartesianGrid{1, Float64, typeof(identity)}, Gridap.Arrays.IdentityVector{Int64}}, reffes::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}; trian::Nothing, kwargs::@Kwargs{conformity::Symbol, vector_type::DataType, dirichlet_tags::String}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:11 [inlined] [31] TestFESpace(::BodyFittedTriangulation{1, 1, CartesianDiscreteModel{1, Float64, typeof(identity)}, CartesianGrid{1, Float64, typeof(identity)}, Gridap.Arrays.IdentityVector{Int64}}, ::Vararg{Any}; kwargs::@Kwargs{conformity::Symbol, vector_type::DataType, dirichlet_tags::String}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:5 [32] _build_fe_test_space(fe::HydroElasticFEM.ParameterHandler.FESpaceConfig, trian::BodyFittedTriangulation{1, 1, CartesianDiscreteModel{1, Float64, typeof(identity)}, CartesianGrid{1, Float64, typeof(identity)}, Gridap.Arrays.IdentityVector{Int64}}, ::HydroElasticFEM.ParameterHandler.FreqDomainConfig) @ HydroElasticFEM.Simulation.FESpaceAssembly ~/.julia/packages/HydroElasticFEM/nJNLa/src/Simulation/FESpaceAssembly.jl:29 [33] build_fe_spaces(entities::Vector{HydroElasticFEM.Physics.EulerBernoulliBeam}, trians::HydroElasticFEM.Geometry.TankTriangulations, config::HydroElasticFEM.ParameterHandler.FreqDomainConfig) @ HydroElasticFEM.Simulation.FESpaceAssembly ~/.julia/packages/HydroElasticFEM/nJNLa/src/Simulation/FESpaceAssembly.jl:195 [34] top-level scope @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/Simulation/FESpaceAssemblyTests.jl:23 [35] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [36] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/Simulation/FESpaceAssemblyTests.jl:119 [inlined] [37] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [38] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/Simulation/FESpaceAssemblyTests.jl:130 [inlined] WARNING: Method definition _single_frequency_state() in module Main at /home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/PotentialFlowTests.jl:9 overwritten at /home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/Simulation/SimulationTests.jl:17. WARNING: Method definition kwcall(NamedTuple{names, T} where T<:Tuple where names, typeof(Main._single_frequency_state)) in module Main at /home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/Physics/PotentialFlowTests.jl:9 overwritten at /home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/Simulation/SimulationTests.jl:17. Computing stiffness contribution for RadiationBC on domain dΓin with wavenumber k=0.17175085388369535. Computing stiffness contribution for RadiationBC on domain dΓout with wavenumber k=0.17175085388369535. Computing stiffness contribution for RadiationBC on domain dΓin with wavenumber k=0.17175085388369535. Computing stiffness contribution for RadiationBC on domain dΓout with wavenumber k=0.17175085388369535. Computing stiffness contribution for RadiationBC on domain dΓin with wavenumber k=0.17175085388369535. Computing stiffness contribution for RadiationBC on domain dΓout with wavenumber k=0.17175085388369535. Time-domain membrane+LRMM: Error During Test at /home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/Membrane/TimeDomain/MemTimeLrmmTests.jl:5 Got exception outside of a @test promotion of types Float64, VectorValue{2, Float64} and VectorValue{2, Float64} failed to change any arguments Stacktrace: [1] error(::String, ::String, ::String) @ Base error.jl:56 [2] sametype_error(input::Tuple{Float64, VectorValue{2, Float64}, VectorValue{2, Float64}}) @ Base promotion.jl:449 [3] not_sametype(x::Tuple{Float64, VectorValue{2, Float64}, VectorValue{2, Float64}}, y::Tuple{Float64, VectorValue{2, Float64}, VectorValue{2, Float64}}) @ Base promotion.jl:443 [4] promote(x::Float64, y::VectorValue{2, Float64}, z::VectorValue{2, Float64}) @ Base promotion.jl:432 [inlined] [5] muladd(a::Float64, b::VectorValue{2, Float64}, c::VectorValue{2, Float64}) @ Base promotion.jl:511 [6] __generic_matvecmul!(::typeof(identity), C::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1121 [7] _generic_matvecmul!(C::Vector{VectorValue{2, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1140 [inlined] [8] generic_matvecmul!(C::Vector{VectorValue{2, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1074 [inlined] [9] mul!(C::Vector{VectorValue{2, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1066 [inlined] [10] _mul!(y::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:74 [inlined] [11] mul!(y::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:71 [inlined] [12] mul!(C::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:281 [inlined] [13] *(A::Matrix{Float64}, x::Vector{VectorValue{2, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:61 [inlined] [14] _compute_high_order_nodes_dim_d!(nodes::Vector{VectorValue{2, Float64}}, facenodes::Vector{Vector{Int64}}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}, ::Val{1}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:528 [15] _compute_high_order_nodes(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:498 [16] _compute_nodes(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:472 [17] compute_nodes(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:663 [18] _lagrangian_ref_fe(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}, poly_type::Type) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:249 [19] Gridap.ReferenceFEs.LagrangianRefFE(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}; space::Symbol, poly_type::Type) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:222 [20] Gridap.ReferenceFEs.LagrangianRefFE(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, order::Int64; space::Symbol, poly_type::Type) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:359 [21] Gridap.ReferenceFEs.LagrangianRefFE(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, order::Int64) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:355 [inlined] [22] ReferenceFE(polytope::Gridap.ReferenceFEs.ExtrusionPolytope{2}, ::Lagrangian, ::Core.TypeEgal{Float64}, orders::Int64; kwargs::@Kwargs{}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:242 [inlined] [23] ReferenceFE(polytope::Gridap.ReferenceFEs.ExtrusionPolytope{2}, ::Lagrangian, ::Core.TypeEgal{Float64}, orders::Int64) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:235 [24] (::Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}})(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:273 [25] iterate(::Base.Generator{Vector{Polytope{2}}, Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}}) @ Base generator.jl:49 [inlined] [26] _collect(c::Vector{Polytope{2}}, itr::Base.Generator{Vector{Polytope{2}}, Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}}, ::Base.EltypeUnknown, isz::Base.HasShape{1}) @ Base array.jl:859 [27] collect_similar(cont::Vector{Polytope{2}}, itr::Base.Generator{Vector{Polytope{2}}, Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}}) @ Base array.jl:774 [inlined] [28] map(f::Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}, A::Vector{Polytope{2}}) @ Base abstractarray.jl:3491 [inlined] [29] ReferenceFE(::CartesianDiscreteModel{2, Float64, var"#mesh_map#mesh_map##0"{Float64, Int64, Float64}}, ::Lagrangian, ::DataType, ::Int64; kwargs::@Kwargs{}) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:273 [30] ReferenceFE(::CartesianDiscreteModel{2, Float64, var"#mesh_map#mesh_map##0"{Float64, Int64, Float64}}, ::Lagrangian, ::DataType, ::Int64) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:270 [inlined] [31] ReferenceFE(trian::CartesianDiscreteModel{2, Float64, var"#mesh_map#mesh_map##0"{Float64, Int64, Float64}}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:288 [inlined] [32] FESpace(model::CartesianDiscreteModel{2, Float64, var"#mesh_map#mesh_map##0"{Float64, Int64, Float64}}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}; kwargs::@Kwargs{trian::BodyFittedTriangulation{2, 2, CartesianDiscreteModel{2, Float64, var"#mesh_map#mesh_map##0"{Float64, Int64, Float64}}, CartesianGrid{2, Float64, var"#mesh_map#mesh_map##0"{Float64, Int64, Float64}}, Gridap.Arrays.IdentityVector{Int64}}, conformity::Symbol}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:19 [33] FESpace(t::BodyFittedTriangulation{2, 2, CartesianDiscreteModel{2, Float64, var"#mesh_map#mesh_map##0"{Float64, Int64, Float64}}, CartesianGrid{2, Float64, var"#mesh_map#mesh_map##0"{Float64, Int64, Float64}}, Gridap.Arrays.IdentityVector{Int64}}, reffes::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}; trian::Nothing, kwargs::@Kwargs{conformity::Symbol}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:11 [inlined] [34] TestFESpace(::BodyFittedTriangulation{2, 2, CartesianDiscreteModel{2, Float64, var"#mesh_map#mesh_map##0"{Float64, Int64, Float64}}, CartesianGrid{2, Float64, var"#mesh_map#mesh_map##0"{Float64, Int64, Float64}}, Gridap.Arrays.IdentityVector{Int64}}, ::Vararg{Any}; kwargs::@Kwargs{conformity::Symbol}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:5 [35] top-level scope @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/Membrane/TimeDomain/MemTimeLrmmTests.jl:11 [36] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [37] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/Membrane/TimeDomain/MemTimeLrmmTests.jl:162 [inlined] Simply-supported beam — uniform load: Error During Test at /home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:91 Got exception outside of a @test promotion of types Float64, VectorValue{1, Float64} and VectorValue{1, Float64} failed to change any arguments Stacktrace: [1] error(::String, ::String, ::String) @ Base error.jl:56 [2] sametype_error(input::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}) @ Base promotion.jl:449 [3] not_sametype(x::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}, y::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}) @ Base promotion.jl:443 [4] promote(x::Float64, y::VectorValue{1, Float64}, z::VectorValue{1, Float64}) @ Base promotion.jl:432 [inlined] [5] muladd(a::Float64, b::VectorValue{1, Float64}, c::VectorValue{1, Float64}) @ Base promotion.jl:511 [6] __generic_matvecmul!(::typeof(identity), C::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1121 [7] _generic_matvecmul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1140 [inlined] [8] generic_matvecmul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1074 [inlined] [9] mul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1066 [inlined] [10] _mul!(y::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:74 [inlined] [11] mul!(y::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:71 [inlined] [12] mul!(C::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:281 [inlined] [13] *(A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:61 [inlined] [14] _compute_node_permutations(p::Gridap.ReferenceFEs.ExtrusionPolytope{1}, interior_nodes::Vector{VectorValue{1, Float64}}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:562 [15] compute_own_nodes_permutations(p::Gridap.ReferenceFEs.ExtrusionPolytope{1}, interior_nodes::Vector{VectorValue{1, Float64}}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:445 [16] get_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:15 [17] get_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/LagrangianRefFEs.jl:190 [18] get_face_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:19 [19] get_face_own_dofs_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/LagrangianRefFEs.jl:276 [20] (::Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity})(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:95 [inlined] [21] iterate(::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}) @ Base generator.jl:49 [inlined] [22] _collect(c::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, itr::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}, ::Base.EltypeUnknown, isz::Base.HasShape{1}) @ Base array.jl:859 [23] collect_similar(cont::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, itr::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}) @ Base array.jl:774 [inlined] [24] map(f::Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}, A::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}) @ Base abstractarray.jl:3491 [inlined] [25] CellConformity(cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:95 [26] CellFE(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, cell_shapefuns::FillArrays.Fill{Gridap.Fields.LinearCombinationFieldVector{Matrix{Float64}, Gridap.Polynomials.MonomialBasis{1, Float64}}, 1, Tuple{Base.OneTo{Int64}}}, cell_dof_basis::FillArrays.Fill{Gridap.ReferenceFEs.LagrangianDofBasis{VectorValue{1, Float64}, Int64}, 1, Tuple{Base.OneTo{Int64}}}, conformity::Gridap.ReferenceFEs.GradConformity) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:220 [27] CellFE(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, conformity::Gridap.ReferenceFEs.GradConformity; kwargs::@Kwargs{scale_dof::Bool, global_meshsize::Nothing}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:237 [28] FESpace(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}; conformity::Nothing, trian::BodyFittedTriangulation{1, 1, CartesianDiscreteModel{1, Float64, typeof(identity)}, CartesianGrid{1, Float64, typeof(identity)}, Gridap.Arrays.IdentityVector{Int64}}, labels::FaceLabeling, dirichlet_tags::String, dirichlet_masks::Nothing, constraint::Nothing, vector_type::Type, scale_dof::Bool, global_meshsize::Nothing) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:81 [29] FESpace(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}; kwargs::@Kwargs{dirichlet_tags::String, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:20 [30] TestFESpace(::CartesianDiscreteModel{1, Float64, typeof(identity)}, ::Vararg{Any}; kwargs::@Kwargs{dirichlet_tags::String, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:5 [31] (::var"#build_beam_problem#build_beam_problem##0"{var"#build_beam_problem#123#126"})(; L::Float64, nel::Int64, order::Int64) @ Main ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:47 [32] (::var"#solve_beam#solve_beam##0")(beam::HydroElasticFEM.Physics.EulerBernoulliBeam, nel::Int64, order::Int64, q::Float64) @ Main ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:64 [33] top-level scope @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:29 [34] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [35] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:92 [inlined] [36] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [37] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:102 [inlined] Clamped-clamped beam — uniform load: Error During Test at /home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:124 Got exception outside of a @test promotion of types Float64, VectorValue{1, Float64} and VectorValue{1, Float64} failed to change any arguments Stacktrace: [1] error(::String, ::String, ::String) @ Base error.jl:56 [2] sametype_error(input::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}) @ Base promotion.jl:449 [3] not_sametype(x::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}, y::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}) @ Base promotion.jl:443 [4] promote(x::Float64, y::VectorValue{1, Float64}, z::VectorValue{1, Float64}) @ Base promotion.jl:432 [inlined] [5] muladd(a::Float64, b::VectorValue{1, Float64}, c::VectorValue{1, Float64}) @ Base promotion.jl:511 [6] __generic_matvecmul!(::typeof(identity), C::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1121 [7] _generic_matvecmul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1140 [inlined] [8] generic_matvecmul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1074 [inlined] [9] mul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1066 [inlined] [10] _mul!(y::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:74 [inlined] [11] mul!(y::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:71 [inlined] [12] mul!(C::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:281 [inlined] [13] *(A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:61 [inlined] [14] _compute_node_permutations(p::Gridap.ReferenceFEs.ExtrusionPolytope{1}, interior_nodes::Vector{VectorValue{1, Float64}}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:562 [15] compute_own_nodes_permutations(p::Gridap.ReferenceFEs.ExtrusionPolytope{1}, interior_nodes::Vector{VectorValue{1, Float64}}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:445 [16] get_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:15 [17] get_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/LagrangianRefFEs.jl:190 [18] get_face_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:19 [19] get_face_own_dofs_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/LagrangianRefFEs.jl:276 [20] (::Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity})(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:95 [inlined] [21] iterate(::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}) @ Base generator.jl:49 [inlined] [22] _collect(c::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, itr::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}, ::Base.EltypeUnknown, isz::Base.HasShape{1}) @ Base array.jl:859 [23] collect_similar(cont::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, itr::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}) @ Base array.jl:774 [inlined] [24] map(f::Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}, A::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}) @ Base abstractarray.jl:3491 [inlined] [25] CellConformity(cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:95 [26] CellFE(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, cell_shapefuns::FillArrays.Fill{Gridap.Fields.LinearCombinationFieldVector{Matrix{Float64}, Gridap.Polynomials.MonomialBasis{1, Float64}}, 1, Tuple{Base.OneTo{Int64}}}, cell_dof_basis::FillArrays.Fill{Gridap.ReferenceFEs.LagrangianDofBasis{VectorValue{1, Float64}, Int64}, 1, Tuple{Base.OneTo{Int64}}}, conformity::Gridap.ReferenceFEs.GradConformity) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:220 [27] CellFE(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, conformity::Gridap.ReferenceFEs.GradConformity; kwargs::@Kwargs{scale_dof::Bool, global_meshsize::Nothing}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:237 [28] FESpace(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}; conformity::Nothing, trian::BodyFittedTriangulation{1, 1, CartesianDiscreteModel{1, Float64, typeof(identity)}, CartesianGrid{1, Float64, typeof(identity)}, Gridap.Arrays.IdentityVector{Int64}}, labels::FaceLabeling, dirichlet_tags::String, dirichlet_masks::Nothing, constraint::Nothing, vector_type::Type, scale_dof::Bool, global_meshsize::Nothing) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:81 [29] FESpace(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}; kwargs::@Kwargs{dirichlet_tags::String, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:20 [30] TestFESpace(::CartesianDiscreteModel{1, Float64, typeof(identity)}, ::Vararg{Any}; kwargs::@Kwargs{dirichlet_tags::String, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:5 [31] (::var"#build_beam_problem#build_beam_problem##0"{var"#build_beam_problem#123#126"})(; L::Float64, nel::Int64, order::Int64) @ Main ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:47 [32] (::var"#solve_beam#solve_beam##0")(beam::HydroElasticFEM.Physics.EulerBernoulliBeam, nel::Int64, order::Int64, q::Float64) @ Main ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:64 [33] top-level scope @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:29 [34] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [35] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:125 [inlined] [36] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [37] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:136 [inlined] Deflection scaling with L and EIᵨ: Error During Test at /home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:158 Got exception outside of a @test promotion of types Float64, VectorValue{1, Float64} and VectorValue{1, Float64} failed to change any arguments Stacktrace: [1] error(::String, ::String, ::String) @ Base error.jl:56 [2] sametype_error(input::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}) @ Base promotion.jl:449 [3] not_sametype(x::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}, y::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}) @ Base promotion.jl:443 [4] promote(x::Float64, y::VectorValue{1, Float64}, z::VectorValue{1, Float64}) @ Base promotion.jl:432 [inlined] [5] muladd(a::Float64, b::VectorValue{1, Float64}, c::VectorValue{1, Float64}) @ Base promotion.jl:511 [6] __generic_matvecmul!(::typeof(identity), C::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1121 [7] _generic_matvecmul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1140 [inlined] [8] generic_matvecmul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1074 [inlined] [9] mul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1066 [inlined] [10] _mul!(y::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:74 [inlined] [11] mul!(y::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:71 [inlined] [12] mul!(C::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:281 [inlined] [13] *(A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:61 [inlined] [14] _compute_node_permutations(p::Gridap.ReferenceFEs.ExtrusionPolytope{1}, interior_nodes::Vector{VectorValue{1, Float64}}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:562 [15] compute_own_nodes_permutations(p::Gridap.ReferenceFEs.ExtrusionPolytope{1}, interior_nodes::Vector{VectorValue{1, Float64}}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:445 [16] get_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:15 [17] get_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/LagrangianRefFEs.jl:190 [18] get_face_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:19 [19] get_face_own_dofs_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/LagrangianRefFEs.jl:276 [20] (::Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity})(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:95 [inlined] [21] iterate(::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}) @ Base generator.jl:49 [inlined] [22] _collect(c::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, itr::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}, ::Base.EltypeUnknown, isz::Base.HasShape{1}) @ Base array.jl:859 [23] collect_similar(cont::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, itr::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}) @ Base array.jl:774 [inlined] [24] map(f::Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}, A::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}) @ Base abstractarray.jl:3491 [inlined] [25] CellConformity(cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:95 [26] CellFE(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, cell_shapefuns::FillArrays.Fill{Gridap.Fields.LinearCombinationFieldVector{Matrix{Float64}, Gridap.Polynomials.MonomialBasis{1, Float64}}, 1, Tuple{Base.OneTo{Int64}}}, cell_dof_basis::FillArrays.Fill{Gridap.ReferenceFEs.LagrangianDofBasis{VectorValue{1, Float64}, Int64}, 1, Tuple{Base.OneTo{Int64}}}, conformity::Gridap.ReferenceFEs.GradConformity) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:220 [27] CellFE(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, conformity::Gridap.ReferenceFEs.GradConformity; kwargs::@Kwargs{scale_dof::Bool, global_meshsize::Nothing}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:237 [28] FESpace(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}; conformity::Nothing, trian::BodyFittedTriangulation{1, 1, CartesianDiscreteModel{1, Float64, typeof(identity)}, CartesianGrid{1, Float64, typeof(identity)}, Gridap.Arrays.IdentityVector{Int64}}, labels::FaceLabeling, dirichlet_tags::String, dirichlet_masks::Nothing, constraint::Nothing, vector_type::Type, scale_dof::Bool, global_meshsize::Nothing) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:81 [29] FESpace(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}; kwargs::@Kwargs{dirichlet_tags::String, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:20 [30] TestFESpace(::CartesianDiscreteModel{1, Float64, typeof(identity)}, ::Vararg{Any}; kwargs::@Kwargs{dirichlet_tags::String, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:5 [31] (::var"#build_beam_problem#build_beam_problem##0"{var"#build_beam_problem#123#126"})(; L::Float64, nel::Int64, order::Int64) @ Main ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:47 [32] (::var"#solve_beam#solve_beam##0")(beam::HydroElasticFEM.Physics.EulerBernoulliBeam, nel::Int64, order::Int64, q::Float64) @ Main ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:64 [33] top-level scope @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:29 [34] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [35] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:159 [inlined] [36] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [37] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:168 [inlined] Mesh convergence: Error During Test at /home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:187 Got exception outside of a @test promotion of types Float64, VectorValue{1, Float64} and VectorValue{1, Float64} failed to change any arguments Stacktrace: [1] error(::String, ::String, ::String) @ Base error.jl:56 [2] sametype_error(input::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}) @ Base promotion.jl:449 [3] not_sametype(x::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}, y::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}) @ Base promotion.jl:443 [4] promote(x::Float64, y::VectorValue{1, Float64}, z::VectorValue{1, Float64}) @ Base promotion.jl:432 [inlined] [5] muladd(a::Float64, b::VectorValue{1, Float64}, c::VectorValue{1, Float64}) @ Base promotion.jl:511 [6] __generic_matvecmul!(::typeof(identity), C::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1121 [7] _generic_matvecmul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1140 [inlined] [8] generic_matvecmul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1074 [inlined] [9] mul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1066 [inlined] [10] _mul!(y::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:74 [inlined] [11] mul!(y::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:71 [inlined] [12] mul!(C::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:281 [inlined] [13] *(A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:61 [inlined] [14] _compute_node_permutations(p::Gridap.ReferenceFEs.ExtrusionPolytope{1}, interior_nodes::Vector{VectorValue{1, Float64}}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:562 [15] compute_own_nodes_permutations(p::Gridap.ReferenceFEs.ExtrusionPolytope{1}, interior_nodes::Vector{VectorValue{1, Float64}}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:445 [16] get_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:15 [17] get_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/LagrangianRefFEs.jl:190 [18] get_face_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:19 [19] get_face_own_dofs_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/LagrangianRefFEs.jl:276 [20] (::Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity})(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:95 [inlined] [21] iterate(::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}) @ Base generator.jl:49 [inlined] [22] _collect(c::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, itr::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}, ::Base.EltypeUnknown, isz::Base.HasShape{1}) @ Base array.jl:859 [23] collect_similar(cont::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, itr::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}) @ Base array.jl:774 [inlined] [24] map(f::Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}, A::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}) @ Base abstractarray.jl:3491 [inlined] [25] CellConformity(cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:95 [26] CellFE(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, cell_shapefuns::FillArrays.Fill{Gridap.Fields.LinearCombinationFieldVector{Matrix{Float64}, Gridap.Polynomials.MonomialBasis{1, Float64}}, 1, Tuple{Base.OneTo{Int64}}}, cell_dof_basis::FillArrays.Fill{Gridap.ReferenceFEs.LagrangianDofBasis{VectorValue{1, Float64}, Int64}, 1, Tuple{Base.OneTo{Int64}}}, conformity::Gridap.ReferenceFEs.GradConformity) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:220 [27] CellFE(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, conformity::Gridap.ReferenceFEs.GradConformity; kwargs::@Kwargs{scale_dof::Bool, global_meshsize::Nothing}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:237 [28] FESpace(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}; conformity::Nothing, trian::BodyFittedTriangulation{1, 1, CartesianDiscreteModel{1, Float64, typeof(identity)}, CartesianGrid{1, Float64, typeof(identity)}, Gridap.Arrays.IdentityVector{Int64}}, labels::FaceLabeling, dirichlet_tags::String, dirichlet_masks::Nothing, constraint::Nothing, vector_type::Type, scale_dof::Bool, global_meshsize::Nothing) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:81 [29] FESpace(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}; kwargs::@Kwargs{dirichlet_tags::String, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:20 [30] TestFESpace(::CartesianDiscreteModel{1, Float64, typeof(identity)}, ::Vararg{Any}; kwargs::@Kwargs{dirichlet_tags::String, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:5 [31] (::var"#build_beam_problem#build_beam_problem##0"{var"#build_beam_problem#123#126"})(; L::Float64, nel::Int64, order::Int64) @ Main ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:47 [32] (::var"#solve_beam#solve_beam##0")(beam::HydroElasticFEM.Physics.EulerBernoulliBeam, nel::Int64, order::Int64, q::Float64) @ Main ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:64 [33] top-level scope @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:29 [34] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [35] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:188 [inlined] [36] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [37] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:200 [inlined] Zero load — zero deflection: Error During Test at /home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:217 Got exception outside of a @test promotion of types Float64, VectorValue{1, Float64} and VectorValue{1, Float64} failed to change any arguments Stacktrace: [1] error(::String, ::String, ::String) @ Base error.jl:56 [2] sametype_error(input::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}) @ Base promotion.jl:449 [3] not_sametype(x::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}, y::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}) @ Base promotion.jl:443 [4] promote(x::Float64, y::VectorValue{1, Float64}, z::VectorValue{1, Float64}) @ Base promotion.jl:432 [inlined] [5] muladd(a::Float64, b::VectorValue{1, Float64}, c::VectorValue{1, Float64}) @ Base promotion.jl:511 [6] __generic_matvecmul!(::typeof(identity), C::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1121 [7] _generic_matvecmul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1140 [inlined] [8] generic_matvecmul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1074 [inlined] [9] mul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1066 [inlined] [10] _mul!(y::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:74 [inlined] [11] mul!(y::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:71 [inlined] [12] mul!(C::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:281 [inlined] [13] *(A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:61 [inlined] [14] _compute_node_permutations(p::Gridap.ReferenceFEs.ExtrusionPolytope{1}, interior_nodes::Vector{VectorValue{1, Float64}}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:562 [15] compute_own_nodes_permutations(p::Gridap.ReferenceFEs.ExtrusionPolytope{1}, interior_nodes::Vector{VectorValue{1, Float64}}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:445 [16] get_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:15 [17] get_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/LagrangianRefFEs.jl:190 [18] get_face_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:19 [19] get_face_own_dofs_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/LagrangianRefFEs.jl:276 [20] (::Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity})(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:95 [inlined] [21] iterate(::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}) @ Base generator.jl:49 [inlined] [22] _collect(c::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, itr::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}, ::Base.EltypeUnknown, isz::Base.HasShape{1}) @ Base array.jl:859 [23] collect_similar(cont::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, itr::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}) @ Base array.jl:774 [inlined] [24] map(f::Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}, A::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}) @ Base abstractarray.jl:3491 [inlined] [25] CellConformity(cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:95 [26] CellFE(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, cell_shapefuns::FillArrays.Fill{Gridap.Fields.LinearCombinationFieldVector{Matrix{Float64}, Gridap.Polynomials.MonomialBasis{1, Float64}}, 1, Tuple{Base.OneTo{Int64}}}, cell_dof_basis::FillArrays.Fill{Gridap.ReferenceFEs.LagrangianDofBasis{VectorValue{1, Float64}, Int64}, 1, Tuple{Base.OneTo{Int64}}}, conformity::Gridap.ReferenceFEs.GradConformity) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:220 [27] CellFE(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, conformity::Gridap.ReferenceFEs.GradConformity; kwargs::@Kwargs{scale_dof::Bool, global_meshsize::Nothing}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:237 [28] FESpace(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}; conformity::Nothing, trian::BodyFittedTriangulation{1, 1, CartesianDiscreteModel{1, Float64, typeof(identity)}, CartesianGrid{1, Float64, typeof(identity)}, Gridap.Arrays.IdentityVector{Int64}}, labels::FaceLabeling, dirichlet_tags::String, dirichlet_masks::Nothing, constraint::Nothing, vector_type::Type, scale_dof::Bool, global_meshsize::Nothing) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:81 [29] FESpace(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}; kwargs::@Kwargs{dirichlet_tags::String, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:20 [30] TestFESpace(::CartesianDiscreteModel{1, Float64, typeof(identity)}, ::Vararg{Any}; kwargs::@Kwargs{dirichlet_tags::String, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:5 [31] (::var"#build_beam_problem#build_beam_problem##0"{var"#build_beam_problem#123#126"})(; L::Float64, nel::Int64, order::Int64) @ Main ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:47 [32] (::var"#solve_beam#solve_beam##0")(beam::HydroElasticFEM.Physics.EulerBernoulliBeam, nel::Int64, order::Int64, q::Float64) @ Main ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:64 [33] top-level scope @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:29 [34] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [35] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:218 [inlined] [36] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [37] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:221 [inlined] Joint kᵣ=0 equals no-joint beam: Error During Test at /home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:297 Got exception outside of a @test promotion of types Float64, VectorValue{1, Float64} and VectorValue{1, Float64} failed to change any arguments Stacktrace: [1] error(::String, ::String, ::String) @ Base error.jl:56 [2] sametype_error(input::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}) @ Base promotion.jl:449 [3] not_sametype(x::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}, y::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}) @ Base promotion.jl:443 [4] promote(x::Float64, y::VectorValue{1, Float64}, z::VectorValue{1, Float64}) @ Base promotion.jl:432 [inlined] [5] muladd(a::Float64, b::VectorValue{1, Float64}, c::VectorValue{1, Float64}) @ Base promotion.jl:511 [6] __generic_matvecmul!(::typeof(identity), C::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1121 [7] _generic_matvecmul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1140 [inlined] [8] generic_matvecmul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1074 [inlined] [9] mul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1066 [inlined] [10] _mul!(y::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:74 [inlined] [11] mul!(y::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:71 [inlined] [12] mul!(C::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:281 [inlined] [13] *(A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:61 [inlined] [14] _compute_node_permutations(p::Gridap.ReferenceFEs.ExtrusionPolytope{1}, interior_nodes::Vector{VectorValue{1, Float64}}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:562 [15] compute_own_nodes_permutations(p::Gridap.ReferenceFEs.ExtrusionPolytope{1}, interior_nodes::Vector{VectorValue{1, Float64}}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:445 [16] get_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:15 [17] get_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/LagrangianRefFEs.jl:190 [18] get_face_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:19 [19] get_face_own_dofs_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/LagrangianRefFEs.jl:276 [20] (::Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity})(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:95 [inlined] [21] iterate(::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}) @ Base generator.jl:49 [inlined] [22] _collect(c::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, itr::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}, ::Base.EltypeUnknown, isz::Base.HasShape{1}) @ Base array.jl:859 [23] collect_similar(cont::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, itr::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}) @ Base array.jl:774 [inlined] [24] map(f::Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}, A::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}) @ Base abstractarray.jl:3491 [inlined] [25] CellConformity(cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:95 [26] CellFE(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, cell_shapefuns::FillArrays.Fill{Gridap.Fields.LinearCombinationFieldVector{Matrix{Float64}, Gridap.Polynomials.MonomialBasis{1, Float64}}, 1, Tuple{Base.OneTo{Int64}}}, cell_dof_basis::FillArrays.Fill{Gridap.ReferenceFEs.LagrangianDofBasis{VectorValue{1, Float64}, Int64}, 1, Tuple{Base.OneTo{Int64}}}, conformity::Gridap.ReferenceFEs.GradConformity) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:220 [27] CellFE(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, conformity::Gridap.ReferenceFEs.GradConformity; kwargs::@Kwargs{scale_dof::Bool, global_meshsize::Nothing}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:237 [28] FESpace(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}; conformity::Nothing, trian::BodyFittedTriangulation{1, 1, CartesianDiscreteModel{1, Float64, typeof(identity)}, CartesianGrid{1, Float64, typeof(identity)}, Gridap.Arrays.IdentityVector{Int64}}, labels::FaceLabeling, dirichlet_tags::String, dirichlet_masks::Nothing, constraint::Nothing, vector_type::Type, scale_dof::Bool, global_meshsize::Nothing) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:81 [29] FESpace(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}; kwargs::@Kwargs{dirichlet_tags::String, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:20 [30] TestFESpace(::CartesianDiscreteModel{1, Float64, typeof(identity)}, ::Vararg{Any}; kwargs::@Kwargs{dirichlet_tags::String, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:5 [31] (::var"#build_beam_problem#build_beam_problem##0"{var"#build_beam_problem#123#126"})(; L::Float64, nel::Int64, order::Int64) @ Main ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:47 [32] (::var"#solve_beam#solve_beam##0")(beam::HydroElasticFEM.Physics.EulerBernoulliBeam, nel::Int64, order::Int64, q::Float64) @ Main ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:64 [33] top-level scope @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:29 [34] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [35] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:298 [inlined] [36] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [37] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:311 [inlined] Joint spring keeps response close to baseline: Error During Test at /home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:327 Got exception outside of a @test promotion of types Float64, VectorValue{1, Float64} and VectorValue{1, Float64} failed to change any arguments Stacktrace: [1] error(::String, ::String, ::String) @ Base error.jl:56 [2] sametype_error(input::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}) @ Base promotion.jl:449 [3] not_sametype(x::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}, y::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}) @ Base promotion.jl:443 [4] promote(x::Float64, y::VectorValue{1, Float64}, z::VectorValue{1, Float64}) @ Base promotion.jl:432 [inlined] [5] muladd(a::Float64, b::VectorValue{1, Float64}, c::VectorValue{1, Float64}) @ Base promotion.jl:511 [6] __generic_matvecmul!(::typeof(identity), C::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1121 [7] _generic_matvecmul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1140 [inlined] [8] generic_matvecmul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1074 [inlined] [9] mul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1066 [inlined] [10] _mul!(y::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:74 [inlined] [11] mul!(y::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:71 [inlined] [12] mul!(C::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:281 [inlined] [13] *(A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:61 [inlined] [14] _compute_node_permutations(p::Gridap.ReferenceFEs.ExtrusionPolytope{1}, interior_nodes::Vector{VectorValue{1, Float64}}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:562 [15] compute_own_nodes_permutations(p::Gridap.ReferenceFEs.ExtrusionPolytope{1}, interior_nodes::Vector{VectorValue{1, Float64}}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:445 [16] get_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:15 [17] get_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/LagrangianRefFEs.jl:190 [18] get_face_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:19 [19] get_face_own_dofs_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/LagrangianRefFEs.jl:276 [20] (::Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity})(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:95 [inlined] [21] iterate(::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}) @ Base generator.jl:49 [inlined] [22] _collect(c::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, itr::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}, ::Base.EltypeUnknown, isz::Base.HasShape{1}) @ Base array.jl:859 [23] collect_similar(cont::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, itr::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}) @ Base array.jl:774 [inlined] [24] map(f::Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}, A::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}) @ Base abstractarray.jl:3491 [inlined] [25] CellConformity(cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:95 [26] CellFE(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, cell_shapefuns::FillArrays.Fill{Gridap.Fields.LinearCombinationFieldVector{Matrix{Float64}, Gridap.Polynomials.MonomialBasis{1, Float64}}, 1, Tuple{Base.OneTo{Int64}}}, cell_dof_basis::FillArrays.Fill{Gridap.ReferenceFEs.LagrangianDofBasis{VectorValue{1, Float64}, Int64}, 1, Tuple{Base.OneTo{Int64}}}, conformity::Gridap.ReferenceFEs.GradConformity) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:220 [27] CellFE(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, conformity::Gridap.ReferenceFEs.GradConformity; kwargs::@Kwargs{scale_dof::Bool, global_meshsize::Nothing}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:237 [28] FESpace(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}; conformity::Nothing, trian::BodyFittedTriangulation{1, 1, CartesianDiscreteModel{1, Float64, typeof(identity)}, CartesianGrid{1, Float64, typeof(identity)}, Gridap.Arrays.IdentityVector{Int64}}, labels::FaceLabeling, dirichlet_tags::String, dirichlet_masks::Nothing, constraint::Nothing, vector_type::Type, scale_dof::Bool, global_meshsize::Nothing) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:81 [29] FESpace(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}; kwargs::@Kwargs{dirichlet_tags::String, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:20 [30] TestFESpace(::CartesianDiscreteModel{1, Float64, typeof(identity)}, ::Vararg{Any}; kwargs::@Kwargs{dirichlet_tags::String, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:5 [31] (::var"#build_beam_problem#build_beam_problem##0"{var"#build_beam_problem#123#126"})(; L::Float64, nel::Int64, order::Int64) @ Main ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:47 [32] (::var"#solve_beam#solve_beam##0")(beam::HydroElasticFEM.Physics.EulerBernoulliBeam, nel::Int64, order::Int64, q::Float64) @ Main ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:64 [33] top-level scope @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:29 [34] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [35] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:328 [inlined] [36] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [37] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:342 [inlined] Rigid joint approaches monolithic deflection: Error During Test at /home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:358 Got exception outside of a @test promotion of types Float64, VectorValue{1, Float64} and VectorValue{1, Float64} failed to change any arguments Stacktrace: [1] error(::String, ::String, ::String) @ Base error.jl:56 [2] sametype_error(input::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}) @ Base promotion.jl:449 [3] not_sametype(x::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}, y::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}) @ Base promotion.jl:443 [4] promote(x::Float64, y::VectorValue{1, Float64}, z::VectorValue{1, Float64}) @ Base promotion.jl:432 [inlined] [5] muladd(a::Float64, b::VectorValue{1, Float64}, c::VectorValue{1, Float64}) @ Base promotion.jl:511 [6] __generic_matvecmul!(::typeof(identity), C::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1121 [7] _generic_matvecmul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1140 [inlined] [8] generic_matvecmul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1074 [inlined] [9] mul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1066 [inlined] [10] _mul!(y::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:74 [inlined] [11] mul!(y::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:71 [inlined] [12] mul!(C::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:281 [inlined] [13] *(A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:61 [inlined] [14] _compute_node_permutations(p::Gridap.ReferenceFEs.ExtrusionPolytope{1}, interior_nodes::Vector{VectorValue{1, Float64}}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:562 [15] compute_own_nodes_permutations(p::Gridap.ReferenceFEs.ExtrusionPolytope{1}, interior_nodes::Vector{VectorValue{1, Float64}}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:445 [16] get_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:15 [17] get_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/LagrangianRefFEs.jl:190 [18] get_face_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:19 [19] get_face_own_dofs_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/LagrangianRefFEs.jl:276 [20] (::Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity})(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:95 [inlined] [21] iterate(::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}) @ Base generator.jl:49 [inlined] [22] _collect(c::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, itr::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}, ::Base.EltypeUnknown, isz::Base.HasShape{1}) @ Base array.jl:859 [23] collect_similar(cont::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, itr::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}) @ Base array.jl:774 [inlined] [24] map(f::Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}, A::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}) @ Base abstractarray.jl:3491 [inlined] [25] CellConformity(cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:95 [26] CellFE(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, cell_shapefuns::FillArrays.Fill{Gridap.Fields.LinearCombinationFieldVector{Matrix{Float64}, Gridap.Polynomials.MonomialBasis{1, Float64}}, 1, Tuple{Base.OneTo{Int64}}}, cell_dof_basis::FillArrays.Fill{Gridap.ReferenceFEs.LagrangianDofBasis{VectorValue{1, Float64}, Int64}, 1, Tuple{Base.OneTo{Int64}}}, conformity::Gridap.ReferenceFEs.GradConformity) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:220 [27] CellFE(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, conformity::Gridap.ReferenceFEs.GradConformity; kwargs::@Kwargs{scale_dof::Bool, global_meshsize::Nothing}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:237 [28] FESpace(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}; conformity::Nothing, trian::BodyFittedTriangulation{1, 1, CartesianDiscreteModel{1, Float64, typeof(identity)}, CartesianGrid{1, Float64, typeof(identity)}, Gridap.Arrays.IdentityVector{Int64}}, labels::FaceLabeling, dirichlet_tags::String, dirichlet_masks::Nothing, constraint::Nothing, vector_type::Type, scale_dof::Bool, global_meshsize::Nothing) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:81 [29] FESpace(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}; kwargs::@Kwargs{dirichlet_tags::String, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:20 [30] TestFESpace(::CartesianDiscreteModel{1, Float64, typeof(identity)}, ::Vararg{Any}; kwargs::@Kwargs{dirichlet_tags::String, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:5 [31] (::var"#build_beam_problem_with_joint#build_beam_problem_with_joint##0"{var"#build_beam_problem_with_joint#124#127"})(; L::Float64, nel::Int64, order::Int64, joint_x::Float64) @ Main ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:263 [32] (::var"#solve_beam_with_joint#solve_beam_with_joint##0")(beam::HydroElasticFEM.Physics.EulerBernoulliBeam, nel::Int64, order::Int64, q::Float64) @ Main ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:274 [33] top-level scope @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:29 [34] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [35] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:359 [inlined] [36] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [37] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:371 [inlined] Joint — symmetric load preserves symmetry: Error During Test at /home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:386 Got exception outside of a @test promotion of types Float64, VectorValue{1, Float64} and VectorValue{1, Float64} failed to change any arguments Stacktrace: [1] error(::String, ::String, ::String) @ Base error.jl:56 [2] sametype_error(input::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}) @ Base promotion.jl:449 [3] not_sametype(x::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}, y::Tuple{Float64, VectorValue{1, Float64}, VectorValue{1, Float64}}) @ Base promotion.jl:443 [4] promote(x::Float64, y::VectorValue{1, Float64}, z::VectorValue{1, Float64}) @ Base promotion.jl:432 [inlined] [5] muladd(a::Float64, b::VectorValue{1, Float64}, c::VectorValue{1, Float64}) @ Base promotion.jl:511 [6] __generic_matvecmul!(::typeof(identity), C::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1121 [7] _generic_matvecmul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1140 [inlined] [8] generic_matvecmul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1074 [inlined] [9] mul!(C::Vector{VectorValue{1, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1066 [inlined] [10] _mul!(y::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:74 [inlined] [11] mul!(y::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:71 [inlined] [12] mul!(C::Vector{VectorValue{1, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{1, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:281 [inlined] [13] *(A::Matrix{Float64}, x::Vector{VectorValue{1, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:61 [inlined] [14] _compute_node_permutations(p::Gridap.ReferenceFEs.ExtrusionPolytope{1}, interior_nodes::Vector{VectorValue{1, Float64}}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:562 [15] compute_own_nodes_permutations(p::Gridap.ReferenceFEs.ExtrusionPolytope{1}, interior_nodes::Vector{VectorValue{1, Float64}}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:445 [16] get_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:15 [17] get_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/LagrangianRefFEs.jl:190 [18] get_face_own_nodes_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:19 [19] get_face_own_dofs_permutations(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/LagrangianRefFEs.jl:276 [20] (::Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity})(reffe::Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:95 [inlined] [21] iterate(::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}) @ Base generator.jl:49 [inlined] [22] _collect(c::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, itr::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}, ::Base.EltypeUnknown, isz::Base.HasShape{1}) @ Base array.jl:859 [23] collect_similar(cont::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, itr::Base.Generator{Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}, Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}}) @ Base array.jl:774 [inlined] [24] map(f::Gridap.FESpaces.var"#CellConformity##6#CellConformity##7"{Gridap.ReferenceFEs.GradConformity}, A::Vector{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}}) @ Base abstractarray.jl:3491 [inlined] [25] CellConformity(cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, conf::Gridap.ReferenceFEs.GradConformity) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:95 [26] CellFE(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, cell_shapefuns::FillArrays.Fill{Gridap.Fields.LinearCombinationFieldVector{Matrix{Float64}, Gridap.Polynomials.MonomialBasis{1, Float64}}, 1, Tuple{Base.OneTo{Int64}}}, cell_dof_basis::FillArrays.Fill{Gridap.ReferenceFEs.LagrangianDofBasis{VectorValue{1, Float64}, Int64}, 1, Tuple{Base.OneTo{Int64}}}, conformity::Gridap.ReferenceFEs.GradConformity) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:220 [27] CellFE(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}, conformity::Gridap.ReferenceFEs.GradConformity; kwargs::@Kwargs{scale_dof::Bool, global_meshsize::Nothing}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/ConformingFESpaces.jl:237 [28] FESpace(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, cell_reffe::FillArrays.Fill{Gridap.ReferenceFEs.GenericLagrangianRefFE{Gridap.ReferenceFEs.GradConformity, 1}, 1, Tuple{Base.OneTo{Int64}}}; conformity::Nothing, trian::BodyFittedTriangulation{1, 1, CartesianDiscreteModel{1, Float64, typeof(identity)}, CartesianGrid{1, Float64, typeof(identity)}, Gridap.Arrays.IdentityVector{Int64}}, labels::FaceLabeling, dirichlet_tags::String, dirichlet_masks::Nothing, constraint::Nothing, vector_type::Type, scale_dof::Bool, global_meshsize::Nothing) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:81 [29] FESpace(model::CartesianDiscreteModel{1, Float64, typeof(identity)}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}; kwargs::@Kwargs{dirichlet_tags::String, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:20 [30] TestFESpace(::CartesianDiscreteModel{1, Float64, typeof(identity)}, ::Vararg{Any}; kwargs::@Kwargs{dirichlet_tags::String, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:5 [31] (::var"#build_beam_problem_with_joint#build_beam_problem_with_joint##0"{var"#build_beam_problem_with_joint#124#127"})(; L::Float64, nel::Int64, order::Int64, joint_x::Float64) @ Main ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:263 [32] (::var"#solve_beam_with_joint#solve_beam_with_joint##0")(beam::HydroElasticFEM.Physics.EulerBernoulliBeam, nel::Int64, order::Int64, q::Float64) @ Main ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:274 [33] top-level scope @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:29 [34] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [35] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:387 [inlined] [36] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [37] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/EulerBernoulliBeamWeakFormTests.jl:397 [inlined] ξ = 0 (no spring): Error During Test at /home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/examples/KhabakhpashevaBeamJointTests.jl:31 Got exception outside of a @test promotion of types Float64, VectorValue{2, Float64} and VectorValue{2, Float64} failed to change any arguments Stacktrace: [1] error(::String, ::String, ::String) @ Base error.jl:56 [2] sametype_error(input::Tuple{Float64, VectorValue{2, Float64}, VectorValue{2, Float64}}) @ Base promotion.jl:449 [3] not_sametype(x::Tuple{Float64, VectorValue{2, Float64}, VectorValue{2, Float64}}, y::Tuple{Float64, VectorValue{2, Float64}, VectorValue{2, Float64}}) @ Base promotion.jl:443 [4] promote(x::Float64, y::VectorValue{2, Float64}, z::VectorValue{2, Float64}) @ Base promotion.jl:432 [inlined] [5] muladd(a::Float64, b::VectorValue{2, Float64}, c::VectorValue{2, Float64}) @ Base promotion.jl:511 [6] __generic_matvecmul!(::typeof(identity), C::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1121 [7] _generic_matvecmul!(C::Vector{VectorValue{2, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1140 [inlined] [8] generic_matvecmul!(C::Vector{VectorValue{2, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1074 [inlined] [9] mul!(C::Vector{VectorValue{2, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1066 [inlined] [10] _mul!(y::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:74 [inlined] [11] mul!(y::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:71 [inlined] [12] mul!(C::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:281 [inlined] [13] *(A::Matrix{Float64}, x::Vector{VectorValue{2, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:61 [inlined] [14] _compute_high_order_nodes_dim_d!(nodes::Vector{VectorValue{2, Float64}}, facenodes::Vector{Vector{Int64}}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}, ::Val{1}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:528 [15] _compute_high_order_nodes(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:498 [16] _compute_nodes(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:472 [17] compute_nodes(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:663 [18] _lagrangian_ref_fe(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}, poly_type::Type) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:249 [19] Gridap.ReferenceFEs.LagrangianRefFE(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}; space::Symbol, poly_type::Type) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:-1 [20] Gridap.ReferenceFEs.LagrangianRefFE(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, order::Int64; space::Symbol, poly_type::Type) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:359 [21] Gridap.ReferenceFEs.LagrangianRefFE(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, order::Int64) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:355 [inlined] [22] ReferenceFE(polytope::Gridap.ReferenceFEs.ExtrusionPolytope{2}, ::Lagrangian, ::Core.TypeEgal{Float64}, orders::Int64; kwargs::@Kwargs{}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:242 [inlined] [23] ReferenceFE(polytope::Gridap.ReferenceFEs.ExtrusionPolytope{2}, ::Lagrangian, ::Core.TypeEgal{Float64}, orders::Int64) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:235 [24] (::Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}})(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:273 [25] iterate(::Base.Generator{Vector{Polytope{2}}, Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}}) @ Base generator.jl:49 [inlined] [26] _collect(c::Vector{Polytope{2}}, itr::Base.Generator{Vector{Polytope{2}}, Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}}, ::Base.EltypeUnknown, isz::Base.HasShape{1}) @ Base array.jl:859 [27] collect_similar(cont::Vector{Polytope{2}}, itr::Base.Generator{Vector{Polytope{2}}, Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}}) @ Base array.jl:774 [inlined] [28] map(f::Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}, A::Vector{Polytope{2}}) @ Base abstractarray.jl:3491 [inlined] [29] ReferenceFE(::CartesianDiscreteModel{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, ::Lagrangian, ::DataType, ::Int64; kwargs::@Kwargs{}) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:273 [30] ReferenceFE(::CartesianDiscreteModel{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, ::Lagrangian, ::DataType, ::Int64) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:270 [inlined] [31] ReferenceFE(trian::CartesianDiscreteModel{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:288 [inlined] [32] FESpace(model::CartesianDiscreteModel{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}; kwargs::@Kwargs{trian::BodyFittedTriangulation{2, 2, CartesianDiscreteModel{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, CartesianGrid{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, Gridap.Arrays.IdentityVector{Int64}}, conformity::Symbol, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:19 [33] FESpace(t::BodyFittedTriangulation{2, 2, CartesianDiscreteModel{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, CartesianGrid{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, Gridap.Arrays.IdentityVector{Int64}}, reffes::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}; trian::Nothing, kwargs::@Kwargs{conformity::Symbol, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:11 [inlined] [34] TestFESpace(::BodyFittedTriangulation{2, 2, CartesianDiscreteModel{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, CartesianGrid{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, Gridap.Arrays.IdentityVector{Int64}}, ::Vararg{Any}; kwargs::@Kwargs{conformity::Symbol, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:5 [35] _build_fe_test_space(fe::HydroElasticFEM.ParameterHandler.FESpaceConfig, trian::BodyFittedTriangulation{2, 2, CartesianDiscreteModel{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, CartesianGrid{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, Gridap.Arrays.IdentityVector{Int64}}, ::HydroElasticFEM.ParameterHandler.FreqDomainConfig) @ HydroElasticFEM.Simulation.FESpaceAssembly ~/.julia/packages/HydroElasticFEM/nJNLa/src/Simulation/FESpaceAssembly.jl:34 [36] build_fe_spaces(entities::Vector{HydroElasticFEM.Physics.PhysicsParameters}, trians::HydroElasticFEM.Geometry.TankTriangulations, config::HydroElasticFEM.ParameterHandler.FreqDomainConfig) @ HydroElasticFEM.Simulation.FESpaceAssembly ~/.julia/packages/HydroElasticFEM/nJNLa/src/Simulation/FESpaceAssembly.jl:195 [37] _build_problem_parts(domain::HydroElasticFEM.Geometry.TankDomain{2, HydroElasticFEM.Geometry.CartesianDomain{2, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, Vector{HydroElasticFEM.Geometry.StructureDomain}, Vector{HydroElasticFEM.Geometry.DampingZone}, Vector{HydroElasticFEM.Geometry.JointDomain}}, physics::Vector{HydroElasticFEM.Physics.PhysicsParameters}, config::HydroElasticFEM.ParameterHandler.FreqDomainConfig) @ HydroElasticFEM.Simulation ~/.julia/packages/HydroElasticFEM/nJNLa/src/Simulation/Simulation.jl:238 [38] build_problem(domain::HydroElasticFEM.Geometry.TankDomain{2, HydroElasticFEM.Geometry.CartesianDomain{2, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, Vector{HydroElasticFEM.Geometry.StructureDomain}, Vector{HydroElasticFEM.Geometry.DampingZone}, Vector{HydroElasticFEM.Geometry.JointDomain}}, physics::Vector{HydroElasticFEM.Physics.PhysicsParameters}, config::HydroElasticFEM.ParameterHandler.FreqDomainConfig; rhs_fn::Nothing) @ HydroElasticFEM.Simulation ~/.julia/packages/HydroElasticFEM/nJNLa/src/Simulation/Simulation.jl:284 [39] build_problem(domain::HydroElasticFEM.Geometry.TankDomain{2, HydroElasticFEM.Geometry.CartesianDomain{2, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, Vector{HydroElasticFEM.Geometry.StructureDomain}, Vector{HydroElasticFEM.Geometry.DampingZone}, Vector{HydroElasticFEM.Geometry.JointDomain}}, physics::Vector{HydroElasticFEM.Physics.PhysicsParameters}, config::HydroElasticFEM.ParameterHandler.FreqDomainConfig) @ HydroElasticFEM.Simulation ~/.julia/packages/HydroElasticFEM/nJNLa/src/Simulation/Simulation.jl:283 [inlined] [40] run_khabakhpasheva_case(params::KhabakhpashevaCaseParams) @ Main.KhabakhpashevaBeamJointExample ~/.julia/packages/HydroElasticFEM/nJNLa/examples/KhabakhpashevaBeamJointExample.jl:202 [41] top-level scope @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/KhabakhpashevaBeamJointTests.jl:24 [42] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [43] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/KhabakhpashevaBeamJointTests.jl:32 [inlined] [44] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [45] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/KhabakhpashevaBeamJointTests.jl:42 [inlined] ξ = 625 (finite spring): Error During Test at /home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/examples/KhabakhpashevaBeamJointTests.jl:69 Got exception outside of a @test promotion of types Float64, VectorValue{2, Float64} and VectorValue{2, Float64} failed to change any arguments Stacktrace: [1] error(::String, ::String, ::String) @ Base error.jl:56 [2] sametype_error(input::Tuple{Float64, VectorValue{2, Float64}, VectorValue{2, Float64}}) @ Base promotion.jl:449 [3] not_sametype(x::Tuple{Float64, VectorValue{2, Float64}, VectorValue{2, Float64}}, y::Tuple{Float64, VectorValue{2, Float64}, VectorValue{2, Float64}}) @ Base promotion.jl:443 [4] promote(x::Float64, y::VectorValue{2, Float64}, z::VectorValue{2, Float64}) @ Base promotion.jl:432 [inlined] [5] muladd(a::Float64, b::VectorValue{2, Float64}, c::VectorValue{2, Float64}) @ Base promotion.jl:511 [6] __generic_matvecmul!(::typeof(identity), C::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1121 [7] _generic_matvecmul!(C::Vector{VectorValue{2, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1140 [inlined] [8] generic_matvecmul!(C::Vector{VectorValue{2, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1074 [inlined] [9] mul!(C::Vector{VectorValue{2, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1066 [inlined] [10] _mul!(y::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:74 [inlined] [11] mul!(y::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:71 [inlined] [12] mul!(C::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:281 [inlined] [13] *(A::Matrix{Float64}, x::Vector{VectorValue{2, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:61 [inlined] [14] _compute_high_order_nodes_dim_d!(nodes::Vector{VectorValue{2, Float64}}, facenodes::Vector{Vector{Int64}}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}, ::Val{1}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:528 [15] _compute_high_order_nodes(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:498 [16] _compute_nodes(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:472 [17] compute_nodes(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:663 [18] _lagrangian_ref_fe(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}, poly_type::Type) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:249 [19] Gridap.ReferenceFEs.LagrangianRefFE(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}; space::Symbol, poly_type::Type) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:-1 [20] Gridap.ReferenceFEs.LagrangianRefFE(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, order::Int64; space::Symbol, poly_type::Type) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:359 [21] Gridap.ReferenceFEs.LagrangianRefFE(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, order::Int64) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:355 [inlined] [22] ReferenceFE(polytope::Gridap.ReferenceFEs.ExtrusionPolytope{2}, ::Lagrangian, ::Core.TypeEgal{Float64}, orders::Int64; kwargs::@Kwargs{}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:242 [inlined] [23] ReferenceFE(polytope::Gridap.ReferenceFEs.ExtrusionPolytope{2}, ::Lagrangian, ::Core.TypeEgal{Float64}, orders::Int64) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:235 [24] (::Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}})(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:273 [25] iterate(::Base.Generator{Vector{Polytope{2}}, Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}}) @ Base generator.jl:49 [inlined] [26] _collect(c::Vector{Polytope{2}}, itr::Base.Generator{Vector{Polytope{2}}, Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}}, ::Base.EltypeUnknown, isz::Base.HasShape{1}) @ Base array.jl:859 [27] collect_similar(cont::Vector{Polytope{2}}, itr::Base.Generator{Vector{Polytope{2}}, Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}}) @ Base array.jl:774 [inlined] [28] map(f::Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}, A::Vector{Polytope{2}}) @ Base abstractarray.jl:3491 [inlined] [29] ReferenceFE(::CartesianDiscreteModel{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, ::Lagrangian, ::DataType, ::Int64; kwargs::@Kwargs{}) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:273 [30] ReferenceFE(::CartesianDiscreteModel{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, ::Lagrangian, ::DataType, ::Int64) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:270 [inlined] [31] ReferenceFE(trian::CartesianDiscreteModel{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:288 [inlined] [32] FESpace(model::CartesianDiscreteModel{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}; kwargs::@Kwargs{trian::BodyFittedTriangulation{2, 2, CartesianDiscreteModel{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, CartesianGrid{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, Gridap.Arrays.IdentityVector{Int64}}, conformity::Symbol, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:19 [33] FESpace(t::BodyFittedTriangulation{2, 2, CartesianDiscreteModel{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, CartesianGrid{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, Gridap.Arrays.IdentityVector{Int64}}, reffes::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}; trian::Nothing, kwargs::@Kwargs{conformity::Symbol, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:11 [inlined] [34] TestFESpace(::BodyFittedTriangulation{2, 2, CartesianDiscreteModel{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, CartesianGrid{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, Gridap.Arrays.IdentityVector{Int64}}, ::Vararg{Any}; kwargs::@Kwargs{conformity::Symbol, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:5 [35] _build_fe_test_space(fe::HydroElasticFEM.ParameterHandler.FESpaceConfig, trian::BodyFittedTriangulation{2, 2, CartesianDiscreteModel{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, CartesianGrid{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, Gridap.Arrays.IdentityVector{Int64}}, ::HydroElasticFEM.ParameterHandler.FreqDomainConfig) @ HydroElasticFEM.Simulation.FESpaceAssembly ~/.julia/packages/HydroElasticFEM/nJNLa/src/Simulation/FESpaceAssembly.jl:34 [36] build_fe_spaces(entities::Vector{HydroElasticFEM.Physics.PhysicsParameters}, trians::HydroElasticFEM.Geometry.TankTriangulations, config::HydroElasticFEM.ParameterHandler.FreqDomainConfig) @ HydroElasticFEM.Simulation.FESpaceAssembly ~/.julia/packages/HydroElasticFEM/nJNLa/src/Simulation/FESpaceAssembly.jl:195 [37] _build_problem_parts(domain::HydroElasticFEM.Geometry.TankDomain{2, HydroElasticFEM.Geometry.CartesianDomain{2, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, Vector{HydroElasticFEM.Geometry.StructureDomain}, Vector{HydroElasticFEM.Geometry.DampingZone}, Vector{HydroElasticFEM.Geometry.JointDomain}}, physics::Vector{HydroElasticFEM.Physics.PhysicsParameters}, config::HydroElasticFEM.ParameterHandler.FreqDomainConfig) @ HydroElasticFEM.Simulation ~/.julia/packages/HydroElasticFEM/nJNLa/src/Simulation/Simulation.jl:238 [38] build_problem(domain::HydroElasticFEM.Geometry.TankDomain{2, HydroElasticFEM.Geometry.CartesianDomain{2, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, Vector{HydroElasticFEM.Geometry.StructureDomain}, Vector{HydroElasticFEM.Geometry.DampingZone}, Vector{HydroElasticFEM.Geometry.JointDomain}}, physics::Vector{HydroElasticFEM.Physics.PhysicsParameters}, config::HydroElasticFEM.ParameterHandler.FreqDomainConfig; rhs_fn::Nothing) @ HydroElasticFEM.Simulation ~/.julia/packages/HydroElasticFEM/nJNLa/src/Simulation/Simulation.jl:284 [39] build_problem(domain::HydroElasticFEM.Geometry.TankDomain{2, HydroElasticFEM.Geometry.CartesianDomain{2, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, Vector{HydroElasticFEM.Geometry.StructureDomain}, Vector{HydroElasticFEM.Geometry.DampingZone}, Vector{HydroElasticFEM.Geometry.JointDomain}}, physics::Vector{HydroElasticFEM.Physics.PhysicsParameters}, config::HydroElasticFEM.ParameterHandler.FreqDomainConfig) @ HydroElasticFEM.Simulation ~/.julia/packages/HydroElasticFEM/nJNLa/src/Simulation/Simulation.jl:283 [inlined] [40] run_khabakhpasheva_case(params::KhabakhpashevaCaseParams) @ Main.KhabakhpashevaBeamJointExample ~/.julia/packages/HydroElasticFEM/nJNLa/examples/KhabakhpashevaBeamJointExample.jl:202 [41] top-level scope @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/KhabakhpashevaBeamJointTests.jl:24 [42] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [43] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/KhabakhpashevaBeamJointTests.jl:70 [inlined] [44] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [45] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/KhabakhpashevaBeamJointTests.jl:80 [inlined] Both cases share the same wave parameters: Error During Test at /home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/examples/KhabakhpashevaBeamJointTests.jl:105 Got exception outside of a @test promotion of types Float64, VectorValue{2, Float64} and VectorValue{2, Float64} failed to change any arguments Stacktrace: [1] error(::String, ::String, ::String) @ Base error.jl:56 [2] sametype_error(input::Tuple{Float64, VectorValue{2, Float64}, VectorValue{2, Float64}}) @ Base promotion.jl:449 [3] not_sametype(x::Tuple{Float64, VectorValue{2, Float64}, VectorValue{2, Float64}}, y::Tuple{Float64, VectorValue{2, Float64}, VectorValue{2, Float64}}) @ Base promotion.jl:443 [4] promote(x::Float64, y::VectorValue{2, Float64}, z::VectorValue{2, Float64}) @ Base promotion.jl:432 [inlined] [5] muladd(a::Float64, b::VectorValue{2, Float64}, c::VectorValue{2, Float64}) @ Base promotion.jl:511 [6] __generic_matvecmul!(::typeof(identity), C::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1121 [7] _generic_matvecmul!(C::Vector{VectorValue{2, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1140 [inlined] [8] generic_matvecmul!(C::Vector{VectorValue{2, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1074 [inlined] [9] mul!(C::Vector{VectorValue{2, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1066 [inlined] [10] _mul!(y::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:74 [inlined] [11] mul!(y::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:71 [inlined] [12] mul!(C::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:281 [inlined] [13] *(A::Matrix{Float64}, x::Vector{VectorValue{2, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:61 [inlined] [14] _compute_high_order_nodes_dim_d!(nodes::Vector{VectorValue{2, Float64}}, facenodes::Vector{Vector{Int64}}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}, ::Val{1}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:528 [15] _compute_high_order_nodes(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:498 [16] _compute_nodes(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:472 [17] compute_nodes(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:663 [18] _lagrangian_ref_fe(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}, poly_type::Type) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:249 [19] Gridap.ReferenceFEs.LagrangianRefFE(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}; space::Symbol, poly_type::Type) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:-1 [20] Gridap.ReferenceFEs.LagrangianRefFE(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, order::Int64; space::Symbol, poly_type::Type) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:359 [21] Gridap.ReferenceFEs.LagrangianRefFE(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, order::Int64) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:355 [inlined] [22] ReferenceFE(polytope::Gridap.ReferenceFEs.ExtrusionPolytope{2}, ::Lagrangian, ::Core.TypeEgal{Float64}, orders::Int64; kwargs::@Kwargs{}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:242 [inlined] [23] ReferenceFE(polytope::Gridap.ReferenceFEs.ExtrusionPolytope{2}, ::Lagrangian, ::Core.TypeEgal{Float64}, orders::Int64) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:235 [24] (::Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}})(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:273 [25] iterate(::Base.Generator{Vector{Polytope{2}}, Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}}) @ Base generator.jl:49 [inlined] [26] _collect(c::Vector{Polytope{2}}, itr::Base.Generator{Vector{Polytope{2}}, Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}}, ::Base.EltypeUnknown, isz::Base.HasShape{1}) @ Base array.jl:859 [27] collect_similar(cont::Vector{Polytope{2}}, itr::Base.Generator{Vector{Polytope{2}}, Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}}) @ Base array.jl:774 [inlined] [28] map(f::Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}, A::Vector{Polytope{2}}) @ Base abstractarray.jl:3491 [inlined] [29] ReferenceFE(::CartesianDiscreteModel{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, ::Lagrangian, ::DataType, ::Int64; kwargs::@Kwargs{}) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:273 [30] ReferenceFE(::CartesianDiscreteModel{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, ::Lagrangian, ::DataType, ::Int64) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:270 [inlined] [31] ReferenceFE(trian::CartesianDiscreteModel{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:288 [inlined] [32] FESpace(model::CartesianDiscreteModel{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}; kwargs::@Kwargs{trian::BodyFittedTriangulation{2, 2, CartesianDiscreteModel{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, CartesianGrid{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, Gridap.Arrays.IdentityVector{Int64}}, conformity::Symbol, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:19 [33] FESpace(t::BodyFittedTriangulation{2, 2, CartesianDiscreteModel{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, CartesianGrid{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, Gridap.Arrays.IdentityVector{Int64}}, reffes::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}; trian::Nothing, kwargs::@Kwargs{conformity::Symbol, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:11 [inlined] [34] TestFESpace(::BodyFittedTriangulation{2, 2, CartesianDiscreteModel{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, CartesianGrid{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, Gridap.Arrays.IdentityVector{Int64}}, ::Vararg{Any}; kwargs::@Kwargs{conformity::Symbol, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:5 [35] _build_fe_test_space(fe::HydroElasticFEM.ParameterHandler.FESpaceConfig, trian::BodyFittedTriangulation{2, 2, CartesianDiscreteModel{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, CartesianGrid{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, Gridap.Arrays.IdentityVector{Int64}}, ::HydroElasticFEM.ParameterHandler.FreqDomainConfig) @ HydroElasticFEM.Simulation.FESpaceAssembly ~/.julia/packages/HydroElasticFEM/nJNLa/src/Simulation/FESpaceAssembly.jl:34 [36] build_fe_spaces(entities::Vector{HydroElasticFEM.Physics.PhysicsParameters}, trians::HydroElasticFEM.Geometry.TankTriangulations, config::HydroElasticFEM.ParameterHandler.FreqDomainConfig) @ HydroElasticFEM.Simulation.FESpaceAssembly ~/.julia/packages/HydroElasticFEM/nJNLa/src/Simulation/FESpaceAssembly.jl:195 [37] _build_problem_parts(domain::HydroElasticFEM.Geometry.TankDomain{2, HydroElasticFEM.Geometry.CartesianDomain{2, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, Vector{HydroElasticFEM.Geometry.StructureDomain}, Vector{HydroElasticFEM.Geometry.DampingZone}, Vector{HydroElasticFEM.Geometry.JointDomain}}, physics::Vector{HydroElasticFEM.Physics.PhysicsParameters}, config::HydroElasticFEM.ParameterHandler.FreqDomainConfig) @ HydroElasticFEM.Simulation ~/.julia/packages/HydroElasticFEM/nJNLa/src/Simulation/Simulation.jl:238 [38] build_problem(domain::HydroElasticFEM.Geometry.TankDomain{2, HydroElasticFEM.Geometry.CartesianDomain{2, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, Vector{HydroElasticFEM.Geometry.StructureDomain}, Vector{HydroElasticFEM.Geometry.DampingZone}, Vector{HydroElasticFEM.Geometry.JointDomain}}, physics::Vector{HydroElasticFEM.Physics.PhysicsParameters}, config::HydroElasticFEM.ParameterHandler.FreqDomainConfig; rhs_fn::Nothing) @ HydroElasticFEM.Simulation ~/.julia/packages/HydroElasticFEM/nJNLa/src/Simulation/Simulation.jl:284 [39] build_problem(domain::HydroElasticFEM.Geometry.TankDomain{2, HydroElasticFEM.Geometry.CartesianDomain{2, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, Vector{HydroElasticFEM.Geometry.StructureDomain}, Vector{HydroElasticFEM.Geometry.DampingZone}, Vector{HydroElasticFEM.Geometry.JointDomain}}, physics::Vector{HydroElasticFEM.Physics.PhysicsParameters}, config::HydroElasticFEM.ParameterHandler.FreqDomainConfig) @ HydroElasticFEM.Simulation ~/.julia/packages/HydroElasticFEM/nJNLa/src/Simulation/Simulation.jl:283 [inlined] [40] run_khabakhpasheva_case(params::KhabakhpashevaCaseParams) @ Main.KhabakhpashevaBeamJointExample ~/.julia/packages/HydroElasticFEM/nJNLa/examples/KhabakhpashevaBeamJointExample.jl:202 [41] top-level scope @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/KhabakhpashevaBeamJointTests.jl:24 [42] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [43] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/KhabakhpashevaBeamJointTests.jl:106 [inlined] [44] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [45] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/KhabakhpashevaBeamJointTests.jl:113 [inlined] run_khabakhpasheva_two_cases wrapper: Error During Test at /home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/examples/KhabakhpashevaBeamJointTests.jl:127 Got exception outside of a @test promotion of types Float64, VectorValue{2, Float64} and VectorValue{2, Float64} failed to change any arguments Stacktrace: [1] error(::String, ::String, ::String) @ Base error.jl:56 [2] sametype_error(input::Tuple{Float64, VectorValue{2, Float64}, VectorValue{2, Float64}}) @ Base promotion.jl:449 [3] not_sametype(x::Tuple{Float64, VectorValue{2, Float64}, VectorValue{2, Float64}}, y::Tuple{Float64, VectorValue{2, Float64}, VectorValue{2, Float64}}) @ Base promotion.jl:443 [4] promote(x::Float64, y::VectorValue{2, Float64}, z::VectorValue{2, Float64}) @ Base promotion.jl:432 [inlined] [5] muladd(a::Float64, b::VectorValue{2, Float64}, c::VectorValue{2, Float64}) @ Base promotion.jl:511 [6] __generic_matvecmul!(::typeof(identity), C::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1121 [7] _generic_matvecmul!(C::Vector{VectorValue{2, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1140 [inlined] [8] generic_matvecmul!(C::Vector{VectorValue{2, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1074 [inlined] [9] mul!(C::Vector{VectorValue{2, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1066 [inlined] [10] _mul!(y::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:74 [inlined] [11] mul!(y::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:71 [inlined] [12] mul!(C::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:281 [inlined] [13] *(A::Matrix{Float64}, x::Vector{VectorValue{2, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:61 [inlined] [14] _compute_high_order_nodes_dim_d!(nodes::Vector{VectorValue{2, Float64}}, facenodes::Vector{Vector{Int64}}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}, ::Val{1}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:528 [15] _compute_high_order_nodes(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:498 [16] _compute_nodes(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:472 [17] compute_nodes(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:663 [18] _lagrangian_ref_fe(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}, poly_type::Type) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:249 [19] Gridap.ReferenceFEs.LagrangianRefFE(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}; space::Symbol, poly_type::Type) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:-1 [20] Gridap.ReferenceFEs.LagrangianRefFE(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, order::Int64; space::Symbol, poly_type::Type) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:359 [21] Gridap.ReferenceFEs.LagrangianRefFE(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, order::Int64) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:355 [inlined] [22] ReferenceFE(polytope::Gridap.ReferenceFEs.ExtrusionPolytope{2}, ::Lagrangian, ::Core.TypeEgal{Float64}, orders::Int64; kwargs::@Kwargs{}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:242 [inlined] [23] ReferenceFE(polytope::Gridap.ReferenceFEs.ExtrusionPolytope{2}, ::Lagrangian, ::Core.TypeEgal{Float64}, orders::Int64) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:235 [24] (::Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}})(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:273 [25] iterate(::Base.Generator{Vector{Polytope{2}}, Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}}) @ Base generator.jl:49 [inlined] [26] _collect(c::Vector{Polytope{2}}, itr::Base.Generator{Vector{Polytope{2}}, Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}}, ::Base.EltypeUnknown, isz::Base.HasShape{1}) @ Base array.jl:859 [27] collect_similar(cont::Vector{Polytope{2}}, itr::Base.Generator{Vector{Polytope{2}}, Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}}) @ Base array.jl:774 [inlined] [28] map(f::Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}, A::Vector{Polytope{2}}) @ Base abstractarray.jl:3491 [inlined] [29] ReferenceFE(::CartesianDiscreteModel{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, ::Lagrangian, ::DataType, ::Int64; kwargs::@Kwargs{}) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:273 [30] ReferenceFE(::CartesianDiscreteModel{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, ::Lagrangian, ::DataType, ::Int64) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:270 [inlined] [31] ReferenceFE(trian::CartesianDiscreteModel{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:288 [inlined] [32] FESpace(model::CartesianDiscreteModel{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}; kwargs::@Kwargs{trian::BodyFittedTriangulation{2, 2, CartesianDiscreteModel{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, CartesianGrid{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, Gridap.Arrays.IdentityVector{Int64}}, conformity::Symbol, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:19 [33] FESpace(t::BodyFittedTriangulation{2, 2, CartesianDiscreteModel{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, CartesianGrid{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, Gridap.Arrays.IdentityVector{Int64}}, reffes::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}; trian::Nothing, kwargs::@Kwargs{conformity::Symbol, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:11 [inlined] [34] TestFESpace(::BodyFittedTriangulation{2, 2, CartesianDiscreteModel{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, CartesianGrid{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, Gridap.Arrays.IdentityVector{Int64}}, ::Vararg{Any}; kwargs::@Kwargs{conformity::Symbol, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:5 [35] _build_fe_test_space(fe::HydroElasticFEM.ParameterHandler.FESpaceConfig, trian::BodyFittedTriangulation{2, 2, CartesianDiscreteModel{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, CartesianGrid{2, Float64, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, Gridap.Arrays.IdentityVector{Int64}}, ::HydroElasticFEM.ParameterHandler.FreqDomainConfig) @ HydroElasticFEM.Simulation.FESpaceAssembly ~/.julia/packages/HydroElasticFEM/nJNLa/src/Simulation/FESpaceAssembly.jl:34 [36] build_fe_spaces(entities::Vector{HydroElasticFEM.Physics.PhysicsParameters}, trians::HydroElasticFEM.Geometry.TankTriangulations, config::HydroElasticFEM.ParameterHandler.FreqDomainConfig) @ HydroElasticFEM.Simulation.FESpaceAssembly ~/.julia/packages/HydroElasticFEM/nJNLa/src/Simulation/FESpaceAssembly.jl:195 [37] _build_problem_parts(domain::HydroElasticFEM.Geometry.TankDomain{2, HydroElasticFEM.Geometry.CartesianDomain{2, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, Vector{HydroElasticFEM.Geometry.StructureDomain}, Vector{HydroElasticFEM.Geometry.DampingZone}, Vector{HydroElasticFEM.Geometry.JointDomain}}, physics::Vector{HydroElasticFEM.Physics.PhysicsParameters}, config::HydroElasticFEM.ParameterHandler.FreqDomainConfig) @ HydroElasticFEM.Simulation ~/.julia/packages/HydroElasticFEM/nJNLa/src/Simulation/Simulation.jl:238 [38] build_problem(domain::HydroElasticFEM.Geometry.TankDomain{2, HydroElasticFEM.Geometry.CartesianDomain{2, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, Vector{HydroElasticFEM.Geometry.StructureDomain}, Vector{HydroElasticFEM.Geometry.DampingZone}, Vector{HydroElasticFEM.Geometry.JointDomain}}, physics::Vector{HydroElasticFEM.Physics.PhysicsParameters}, config::HydroElasticFEM.ParameterHandler.FreqDomainConfig; rhs_fn::Nothing) @ HydroElasticFEM.Simulation ~/.julia/packages/HydroElasticFEM/nJNLa/src/Simulation/Simulation.jl:284 [39] build_problem(domain::HydroElasticFEM.Geometry.TankDomain{2, HydroElasticFEM.Geometry.CartesianDomain{2, Main.KhabakhpashevaBeamJointExample.var"#_graded_map##1#_graded_map##2"{Main.KhabakhpashevaBeamJointExample.var"#f_y#_graded_map##0"{Float64, Int64}}}, Vector{HydroElasticFEM.Geometry.StructureDomain}, Vector{HydroElasticFEM.Geometry.DampingZone}, Vector{HydroElasticFEM.Geometry.JointDomain}}, physics::Vector{HydroElasticFEM.Physics.PhysicsParameters}, config::HydroElasticFEM.ParameterHandler.FreqDomainConfig) @ HydroElasticFEM.Simulation ~/.julia/packages/HydroElasticFEM/nJNLa/src/Simulation/Simulation.jl:283 [inlined] [40] run_khabakhpasheva_case(params::KhabakhpashevaCaseParams) @ Main.KhabakhpashevaBeamJointExample ~/.julia/packages/HydroElasticFEM/nJNLa/examples/KhabakhpashevaBeamJointExample.jl:202 [41] run_khabakhpasheva_two_cases(; nx::Int64, ny::Int64, order::Int64, order_pf::Int64, vtk_output::Bool, make_plot::Bool) @ Main.KhabakhpashevaBeamJointExample ~/.julia/packages/HydroElasticFEM/nJNLa/examples/KhabakhpashevaBeamJointExample.jl:274 [42] top-level scope @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/KhabakhpashevaBeamJointTests.jl:24 [43] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [44] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/KhabakhpashevaBeamJointTests.jl:128 [inlined] [45] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [46] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/KhabakhpashevaBeamJointTests.jl:128 [inlined] Info : Reading '/tmp/jl_2tMjAnI3g7.msh'... Info : 17 entities Info : 1233 nodes Info : 2464 elements Info : Done reading '/tmp/jl_2tMjAnI3g7.msh' ───────────────────────────────────────────────────────── validate_gmsh_tags: "/tmp/jl_2tMjAnI3g7.msh" (dim=2) ───────────────────────────────────────────────────────── Detected physical groups: damping_in, damping_out, fluid, free_surface, inlet, outlet, seabed, structure ✓ PRESENT "fluid" ✓ PRESENT "seabed" ✓ PRESENT "inlet" ✓ PRESENT "outlet" ✓ PRESENT "free_surface" ✓ PRESENT "structure" ✓ PRESENT "damping_in" ✓ PRESENT "damping_out" Result: ALL required tags present ✓ ───────────────────────────────────────────────────────── Info : Reading '/tmp/jl_2tMjAnI3g7.msh'... Info : 17 entities Info : 1233 nodes Info : 2464 elements Info : Done reading '/tmp/jl_2tMjAnI3g7.msh' Info : Reading '/tmp/jl_5LQf2W/test_omega04/liu_mesh.msh'... Info : 17 entities Info : 1233 nodes Info : 2464 elements Info : Done reading '/tmp/jl_5LQf2W/test_omega04/liu_mesh.msh' Case ω = 0.4 rad/s: Error During Test at /home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/examples/test_liu_benchmark.jl:80 Got exception outside of a @test promotion of types Float64, VectorValue{2, Float64} and VectorValue{2, Float64} failed to change any arguments Stacktrace: [1] error(::String, ::String, ::String) @ Base error.jl:56 [2] sametype_error(input::Tuple{Float64, VectorValue{2, Float64}, VectorValue{2, Float64}}) @ Base promotion.jl:449 [3] not_sametype(x::Tuple{Float64, VectorValue{2, Float64}, VectorValue{2, Float64}}, y::Tuple{Float64, VectorValue{2, Float64}, VectorValue{2, Float64}}) @ Base promotion.jl:443 [4] promote(x::Float64, y::VectorValue{2, Float64}, z::VectorValue{2, Float64}) @ Base promotion.jl:432 [inlined] [5] muladd(a::Float64, b::VectorValue{2, Float64}, c::VectorValue{2, Float64}) @ Base promotion.jl:511 [6] __generic_matvecmul!(::typeof(identity), C::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1121 [7] _generic_matvecmul!(C::Vector{VectorValue{2, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1140 [inlined] [8] generic_matvecmul!(C::Vector{VectorValue{2, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1074 [inlined] [9] mul!(C::Vector{VectorValue{2, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1066 [inlined] [10] _mul!(y::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:74 [inlined] [11] mul!(y::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:71 [inlined] [12] mul!(C::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:281 [inlined] [13] *(A::Matrix{Float64}, x::Vector{VectorValue{2, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:61 [inlined] [14] _compute_high_order_nodes_dim_d!(nodes::Vector{VectorValue{2, Float64}}, facenodes::Vector{Vector{Int64}}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}, ::Val{1}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:528 [15] _compute_high_order_nodes(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:498 [16] _compute_nodes(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:472 [17] compute_nodes(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:663 [18] _lagrangian_ref_fe(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}, poly_type::Type) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:249 [19] Gridap.ReferenceFEs.LagrangianRefFE(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}; space::Symbol, poly_type::Type) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:-1 [20] Gridap.ReferenceFEs.LagrangianRefFE(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, order::Int64; space::Symbol, poly_type::Type) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:359 [21] Gridap.ReferenceFEs.LagrangianRefFE(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, order::Int64) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:355 [inlined] [22] ReferenceFE(polytope::Gridap.ReferenceFEs.ExtrusionPolytope{2}, ::Lagrangian, ::Core.TypeEgal{Float64}, orders::Int64; kwargs::@Kwargs{}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:242 [inlined] [23] ReferenceFE(polytope::Gridap.ReferenceFEs.ExtrusionPolytope{2}, ::Lagrangian, ::Core.TypeEgal{Float64}, orders::Int64) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:235 [24] (::Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}})(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:273 [25] iterate(::Base.Generator{Vector{Polytope{2}}, Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}}) @ Base generator.jl:49 [inlined] [26] _collect(c::Vector{Polytope{2}}, itr::Base.Generator{Vector{Polytope{2}}, Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}}, ::Base.EltypeUnknown, isz::Base.HasShape{1}) @ Base array.jl:859 [27] collect_similar(cont::Vector{Polytope{2}}, itr::Base.Generator{Vector{Polytope{2}}, Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}}) @ Base array.jl:774 [inlined] [28] map(f::Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}, A::Vector{Polytope{2}}) @ Base abstractarray.jl:3491 [inlined] [29] ReferenceFE(::UnstructuredDiscreteModel{2, 2, Float64, Oriented}, ::Lagrangian, ::DataType, ::Int64; kwargs::@Kwargs{}) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:273 [30] ReferenceFE(::UnstructuredDiscreteModel{2, 2, Float64, Oriented}, ::Lagrangian, ::DataType, ::Int64) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:270 [inlined] [31] ReferenceFE(trian::UnstructuredDiscreteModel{2, 2, Float64, Oriented}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:288 [inlined] [32] FESpace(model::UnstructuredDiscreteModel{2, 2, Float64, Oriented}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}; kwargs::@Kwargs{trian::BodyFittedTriangulation{2, 2, UnstructuredDiscreteModel{2, 2, Float64, Oriented}, UnstructuredGrid{2, 2, Float64, Oriented, Nothing}, Gridap.Arrays.IdentityVector{Int64}}, conformity::Symbol, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:19 [33] FESpace(t::BodyFittedTriangulation{2, 2, UnstructuredDiscreteModel{2, 2, Float64, Oriented}, UnstructuredGrid{2, 2, Float64, Oriented, Nothing}, Gridap.Arrays.IdentityVector{Int64}}, reffes::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}; trian::Nothing, kwargs::@Kwargs{conformity::Symbol, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:11 [inlined] [34] TestFESpace(::BodyFittedTriangulation{2, 2, UnstructuredDiscreteModel{2, 2, Float64, Oriented}, UnstructuredGrid{2, 2, Float64, Oriented, Nothing}, Gridap.Arrays.IdentityVector{Int64}}, ::Vararg{Any}; kwargs::@Kwargs{conformity::Symbol, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:5 [35] _build_fe_test_space(fe::HydroElasticFEM.ParameterHandler.FESpaceConfig, trian::BodyFittedTriangulation{2, 2, UnstructuredDiscreteModel{2, 2, Float64, Oriented}, UnstructuredGrid{2, 2, Float64, Oriented, Nothing}, Gridap.Arrays.IdentityVector{Int64}}, ::HydroElasticFEM.ParameterHandler.FreqDomainConfig) @ HydroElasticFEM.Simulation.FESpaceAssembly ~/.julia/packages/HydroElasticFEM/nJNLa/src/Simulation/FESpaceAssembly.jl:34 [36] build_fe_spaces(entities::Vector{HydroElasticFEM.Physics.PhysicsParameters}, trians::HydroElasticFEM.Geometry.TankTriangulations, config::HydroElasticFEM.ParameterHandler.FreqDomainConfig) @ HydroElasticFEM.Simulation.FESpaceAssembly ~/.julia/packages/HydroElasticFEM/nJNLa/src/Simulation/FESpaceAssembly.jl:195 [37] _build_problem_parts(domain::HydroElasticFEM.Geometry.GmshDomain, physics::Vector{HydroElasticFEM.Physics.PhysicsParameters}, config::HydroElasticFEM.ParameterHandler.FreqDomainConfig) @ HydroElasticFEM.Simulation ~/.julia/packages/HydroElasticFEM/nJNLa/src/Simulation/Simulation.jl:238 [38] build_problem(domain::HydroElasticFEM.Geometry.GmshDomain, physics::Vector{HydroElasticFEM.Physics.PhysicsParameters}, config::HydroElasticFEM.ParameterHandler.FreqDomainConfig; rhs_fn::Nothing) @ HydroElasticFEM.Simulation ~/.julia/packages/HydroElasticFEM/nJNLa/src/Simulation/Simulation.jl:284 [39] build_problem(domain::HydroElasticFEM.Geometry.GmshDomain, physics::Vector{HydroElasticFEM.Physics.PhysicsParameters}, config::HydroElasticFEM.ParameterHandler.FreqDomainConfig) @ HydroElasticFEM.Simulation ~/.julia/packages/HydroElasticFEM/nJNLa/src/Simulation/Simulation.jl:283 [inlined] [40] run_liu_case(params::LiuCaseParams) @ Main.LiuBenchmarkGmsh ~/.julia/packages/HydroElasticFEM/nJNLa/examples/LiuBenchmarkGmsh.jl:349 [41] (::var"#133#134"{Float64})(tmp::String) @ Main ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/test_liu_benchmark.jl:91 [42] mktempdir(fn::var"#133#134"{Float64}, parent::String; prefix::String) @ Base.Filesystem file.jl:949 [43] mktempdir(fn::Function, parent::String) @ Base.Filesystem file.jl:945 [44] top-level scope @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/test_liu_benchmark.jl:41 [45] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [46] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/test_liu_benchmark.jl:81 [inlined] [47] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [48] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/test_liu_benchmark.jl:81 [inlined] Info : Reading '/tmp/jl_lORWvF/test_omega08/liu_mesh.msh'... Info : 17 entities Info : 1233 nodes Info : 2464 elements Info : Done reading '/tmp/jl_lORWvF/test_omega08/liu_mesh.msh' Case ω = 0.8 rad/s: Error During Test at /home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/examples/test_liu_benchmark.jl:115 Got exception outside of a @test promotion of types Float64, VectorValue{2, Float64} and VectorValue{2, Float64} failed to change any arguments Stacktrace: [1] error(::String, ::String, ::String) @ Base error.jl:56 [2] sametype_error(input::Tuple{Float64, VectorValue{2, Float64}, VectorValue{2, Float64}}) @ Base promotion.jl:449 [3] not_sametype(x::Tuple{Float64, VectorValue{2, Float64}, VectorValue{2, Float64}}, y::Tuple{Float64, VectorValue{2, Float64}, VectorValue{2, Float64}}) @ Base promotion.jl:443 [4] promote(x::Float64, y::VectorValue{2, Float64}, z::VectorValue{2, Float64}) @ Base promotion.jl:432 [inlined] [5] muladd(a::Float64, b::VectorValue{2, Float64}, c::VectorValue{2, Float64}) @ Base promotion.jl:511 [6] __generic_matvecmul!(::typeof(identity), C::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1121 [7] _generic_matvecmul!(C::Vector{VectorValue{2, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1140 [inlined] [8] generic_matvecmul!(C::Vector{VectorValue{2, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1074 [inlined] [9] mul!(C::Vector{VectorValue{2, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1066 [inlined] [10] _mul!(y::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:74 [inlined] [11] mul!(y::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{2, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:71 [inlined] [12] mul!(C::Vector{VectorValue{2, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{2, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:281 [inlined] [13] *(A::Matrix{Float64}, x::Vector{VectorValue{2, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:61 [inlined] [14] _compute_high_order_nodes_dim_d!(nodes::Vector{VectorValue{2, Float64}}, facenodes::Vector{Vector{Int64}}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}, ::Val{1}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:528 [15] _compute_high_order_nodes(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:498 [16] _compute_nodes(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:472 [17] compute_nodes(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:663 [18] _lagrangian_ref_fe(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}, poly_type::Type) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:249 [19] Gridap.ReferenceFEs.LagrangianRefFE(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, orders::Tuple{Int64, Int64}; space::Symbol, poly_type::Type) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:-1 [20] Gridap.ReferenceFEs.LagrangianRefFE(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, order::Int64; space::Symbol, poly_type::Type) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:359 [21] Gridap.ReferenceFEs.LagrangianRefFE(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{2}, order::Int64) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:355 [inlined] [22] ReferenceFE(polytope::Gridap.ReferenceFEs.ExtrusionPolytope{2}, ::Lagrangian, ::Core.TypeEgal{Float64}, orders::Int64; kwargs::@Kwargs{}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:242 [inlined] [23] ReferenceFE(polytope::Gridap.ReferenceFEs.ExtrusionPolytope{2}, ::Lagrangian, ::Core.TypeEgal{Float64}, orders::Int64) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:235 [24] (::Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}})(p::Gridap.ReferenceFEs.ExtrusionPolytope{2}) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:273 [25] iterate(::Base.Generator{Vector{Polytope{2}}, Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}}) @ Base generator.jl:49 [inlined] [26] _collect(c::Vector{Polytope{2}}, itr::Base.Generator{Vector{Polytope{2}}, Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}}, ::Base.EltypeUnknown, isz::Base.HasShape{1}) @ Base array.jl:859 [27] collect_similar(cont::Vector{Polytope{2}}, itr::Base.Generator{Vector{Polytope{2}}, Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}}) @ Base array.jl:774 [inlined] [28] map(f::Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}, A::Vector{Polytope{2}}) @ Base abstractarray.jl:3491 [inlined] [29] ReferenceFE(::UnstructuredDiscreteModel{2, 2, Float64, Oriented}, ::Lagrangian, ::DataType, ::Int64; kwargs::@Kwargs{}) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:273 [30] ReferenceFE(::UnstructuredDiscreteModel{2, 2, Float64, Oriented}, ::Lagrangian, ::DataType, ::Int64) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:270 [inlined] [31] ReferenceFE(trian::UnstructuredDiscreteModel{2, 2, Float64, Oriented}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:288 [inlined] [32] FESpace(model::UnstructuredDiscreteModel{2, 2, Float64, Oriented}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}; kwargs::@Kwargs{trian::BodyFittedTriangulation{2, 2, UnstructuredDiscreteModel{2, 2, Float64, Oriented}, UnstructuredGrid{2, 2, Float64, Oriented, Nothing}, Gridap.Arrays.IdentityVector{Int64}}, conformity::Symbol, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:19 [33] FESpace(t::BodyFittedTriangulation{2, 2, UnstructuredDiscreteModel{2, 2, Float64, Oriented}, UnstructuredGrid{2, 2, Float64, Oriented, Nothing}, Gridap.Arrays.IdentityVector{Int64}}, reffes::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}; trian::Nothing, kwargs::@Kwargs{conformity::Symbol, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:11 [inlined] [34] TestFESpace(::BodyFittedTriangulation{2, 2, UnstructuredDiscreteModel{2, 2, Float64, Oriented}, UnstructuredGrid{2, 2, Float64, Oriented, Nothing}, Gridap.Arrays.IdentityVector{Int64}}, ::Vararg{Any}; kwargs::@Kwargs{conformity::Symbol, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:5 [35] _build_fe_test_space(fe::HydroElasticFEM.ParameterHandler.FESpaceConfig, trian::BodyFittedTriangulation{2, 2, UnstructuredDiscreteModel{2, 2, Float64, Oriented}, UnstructuredGrid{2, 2, Float64, Oriented, Nothing}, Gridap.Arrays.IdentityVector{Int64}}, ::HydroElasticFEM.ParameterHandler.FreqDomainConfig) @ HydroElasticFEM.Simulation.FESpaceAssembly ~/.julia/packages/HydroElasticFEM/nJNLa/src/Simulation/FESpaceAssembly.jl:34 [36] build_fe_spaces(entities::Vector{HydroElasticFEM.Physics.PhysicsParameters}, trians::HydroElasticFEM.Geometry.TankTriangulations, config::HydroElasticFEM.ParameterHandler.FreqDomainConfig) @ HydroElasticFEM.Simulation.FESpaceAssembly ~/.julia/packages/HydroElasticFEM/nJNLa/src/Simulation/FESpaceAssembly.jl:195 [37] _build_problem_parts(domain::HydroElasticFEM.Geometry.GmshDomain, physics::Vector{HydroElasticFEM.Physics.PhysicsParameters}, config::HydroElasticFEM.ParameterHandler.FreqDomainConfig) @ HydroElasticFEM.Simulation ~/.julia/packages/HydroElasticFEM/nJNLa/src/Simulation/Simulation.jl:238 [38] build_problem(domain::HydroElasticFEM.Geometry.GmshDomain, physics::Vector{HydroElasticFEM.Physics.PhysicsParameters}, config::HydroElasticFEM.ParameterHandler.FreqDomainConfig; rhs_fn::Nothing) @ HydroElasticFEM.Simulation ~/.julia/packages/HydroElasticFEM/nJNLa/src/Simulation/Simulation.jl:284 [39] build_problem(domain::HydroElasticFEM.Geometry.GmshDomain, physics::Vector{HydroElasticFEM.Physics.PhysicsParameters}, config::HydroElasticFEM.ParameterHandler.FreqDomainConfig) @ HydroElasticFEM.Simulation ~/.julia/packages/HydroElasticFEM/nJNLa/src/Simulation/Simulation.jl:283 [inlined] [40] run_liu_case(params::LiuCaseParams) @ Main.LiuBenchmarkGmsh ~/.julia/packages/HydroElasticFEM/nJNLa/examples/LiuBenchmarkGmsh.jl:349 [41] (::var"#135#136"{Float64})(tmp::String) @ Main ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/test_liu_benchmark.jl:126 [42] mktempdir(fn::var"#135#136"{Float64}, parent::String; prefix::String) @ Base.Filesystem file.jl:949 [43] mktempdir(fn::Function, parent::String) @ Base.Filesystem file.jl:945 [44] top-level scope @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/test_liu_benchmark.jl:41 [45] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [46] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/test_liu_benchmark.jl:116 [inlined] [47] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [48] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/test_liu_benchmark.jl:116 [inlined] Yago 3D freq - warm-up solve: Error During Test at /home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/examples/test_yago_3d_freq.jl:57 Got exception outside of a @test promotion of types Float64, VectorValue{3, Float64} and VectorValue{3, Float64} failed to change any arguments Stacktrace: [1] error(::String, ::String, ::String) @ Base error.jl:56 [2] sametype_error(input::Tuple{Float64, VectorValue{3, Float64}, VectorValue{3, Float64}}) @ Base promotion.jl:449 [3] not_sametype(x::Tuple{Float64, VectorValue{3, Float64}, VectorValue{3, Float64}}, y::Tuple{Float64, VectorValue{3, Float64}, VectorValue{3, Float64}}) @ Base promotion.jl:443 [4] promote(x::Float64, y::VectorValue{3, Float64}, z::VectorValue{3, Float64}) @ Base promotion.jl:432 [inlined] [5] muladd(a::Float64, b::VectorValue{3, Float64}, c::VectorValue{3, Float64}) @ Base promotion.jl:511 [6] __generic_matvecmul!(::typeof(identity), C::Vector{VectorValue{3, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{3, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1121 [7] _generic_matvecmul!(C::Vector{VectorValue{3, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{3, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1140 [inlined] [8] generic_matvecmul!(C::Vector{VectorValue{3, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{3, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1074 [inlined] [9] mul!(C::Vector{VectorValue{3, Float64}}, tA::Char, A::Matrix{Float64}, B::Vector{VectorValue{3, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:1066 [inlined] [10] _mul!(y::Vector{VectorValue{3, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{3, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:74 [inlined] [11] mul!(y::Vector{VectorValue{3, Float64}}, A::Matrix{Float64}, x::Vector{VectorValue{3, Float64}}, alpha::Bool, beta::Bool) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:71 [inlined] [12] mul!(C::Vector{VectorValue{3, Float64}}, A::Matrix{Float64}, B::Vector{VectorValue{3, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:281 [inlined] [13] *(A::Matrix{Float64}, x::Vector{VectorValue{3, Float64}}) @ LinearAlgebra /opt/julia/share/julia/stdlib/v1.14/LinearAlgebra/src/matmul.jl:61 [inlined] [14] _compute_high_order_nodes_dim_d!(nodes::Vector{VectorValue{3, Float64}}, facenodes::Vector{Vector{Int64}}, p::Gridap.ReferenceFEs.ExtrusionPolytope{3}, orders::Tuple{Int64, Int64, Int64}, ::Val{1}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:528 [15] _compute_high_order_nodes(p::Gridap.ReferenceFEs.ExtrusionPolytope{3}, orders::Tuple{Int64, Int64, Int64}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:498 [16] _compute_nodes(p::Gridap.ReferenceFEs.ExtrusionPolytope{3}, orders::Tuple{Int64, Int64, Int64}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:472 [17] compute_nodes(p::Gridap.ReferenceFEs.ExtrusionPolytope{3}, orders::Tuple{Int64, Int64, Int64}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:663 [18] _lagrangian_ref_fe(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{3}, orders::Tuple{Int64, Int64, Int64}, poly_type::Type) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:249 [19] Gridap.ReferenceFEs.LagrangianRefFE(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{3}, orders::Tuple{Int64, Int64, Int64}; space::Symbol, poly_type::Type) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:-1 [20] Gridap.ReferenceFEs.LagrangianRefFE(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{3}, order::Int64; space::Symbol, poly_type::Type) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:359 [21] Gridap.ReferenceFEs.LagrangianRefFE(::Core.TypeEgal{Float64}, p::Gridap.ReferenceFEs.ExtrusionPolytope{3}, order::Int64) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:355 [inlined] [22] ReferenceFE(polytope::Gridap.ReferenceFEs.ExtrusionPolytope{3}, ::Lagrangian, ::Core.TypeEgal{Float64}, orders::Int64; kwargs::@Kwargs{}) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:242 [inlined] [23] ReferenceFE(polytope::Gridap.ReferenceFEs.ExtrusionPolytope{3}, ::Lagrangian, ::Core.TypeEgal{Float64}, orders::Int64) @ Gridap.ReferenceFEs ~/.julia/packages/Gridap/FDYkr/src/ReferenceFEs/CLagrangianRefFEs.jl:235 [24] (::Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}})(p::Gridap.ReferenceFEs.ExtrusionPolytope{3}) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:273 [25] iterate(::Base.Generator{Vector{Polytope{3}}, Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}}) @ Base generator.jl:49 [inlined] [26] _collect(c::Vector{Polytope{3}}, itr::Base.Generator{Vector{Polytope{3}}, Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}}, ::Base.EltypeUnknown, isz::Base.HasShape{1}) @ Base array.jl:859 [27] collect_similar(cont::Vector{Polytope{3}}, itr::Base.Generator{Vector{Polytope{3}}, Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}}) @ Base array.jl:774 [inlined] [28] map(f::Gridap.Geometry.var"#8#9"{@Kwargs{}, Tuple{Lagrangian, DataType, Int64}}, A::Vector{Polytope{3}}) @ Base abstractarray.jl:3491 [inlined] [29] ReferenceFE(::CartesianDiscreteModel{3, Float64, Main.YagoBenchmark3DFreq.var"#7#8"{Int64, @NamedTuple{L::Float64, B::Float64, H::Float64, hb::Float64, nLΩ::Int64, nBΩ::Int64, LΩ::Float64, BΩ::Float64, xb₀::Float64, xb₁::Float64, yb₀::Float64, yb₁::Float64, g::Float64, ρ::Float64, ρb::Float64, E::Float64, ν::Float64, D::Float64, d₀::Float64, C::Gridap.TensorValues.SymFourthOrderTensorValue{3, Float64, 36}}}}, ::Lagrangian, ::DataType, ::Int64; kwargs::@Kwargs{}) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:273 [30] ReferenceFE(::CartesianDiscreteModel{3, Float64, Main.YagoBenchmark3DFreq.var"#7#8"{Int64, @NamedTuple{L::Float64, B::Float64, H::Float64, hb::Float64, nLΩ::Int64, nBΩ::Int64, LΩ::Float64, BΩ::Float64, xb₀::Float64, xb₁::Float64, yb₀::Float64, yb₁::Float64, g::Float64, ρ::Float64, ρb::Float64, E::Float64, ν::Float64, D::Float64, d₀::Float64, C::Gridap.TensorValues.SymFourthOrderTensorValue{3, Float64, 36}}}}, ::Lagrangian, ::DataType, ::Int64) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:270 [inlined] [31] ReferenceFE(trian::CartesianDiscreteModel{3, Float64, Main.YagoBenchmark3DFreq.var"#7#8"{Int64, @NamedTuple{L::Float64, B::Float64, H::Float64, hb::Float64, nLΩ::Int64, nBΩ::Int64, LΩ::Float64, BΩ::Float64, xb₀::Float64, xb₁::Float64, yb₀::Float64, yb₁::Float64, g::Float64, ρ::Float64, ρb::Float64, E::Float64, ν::Float64, D::Float64, d₀::Float64, C::Gridap.TensorValues.SymFourthOrderTensorValue{3, Float64, 36}}}}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}) @ Gridap.Geometry ~/.julia/packages/Gridap/FDYkr/src/Geometry/Grids.jl:288 [inlined] [32] FESpace(model::CartesianDiscreteModel{3, Float64, Main.YagoBenchmark3DFreq.var"#7#8"{Int64, @NamedTuple{L::Float64, B::Float64, H::Float64, hb::Float64, nLΩ::Int64, nBΩ::Int64, LΩ::Float64, BΩ::Float64, xb₀::Float64, xb₁::Float64, yb₀::Float64, yb₁::Float64, g::Float64, ρ::Float64, ρb::Float64, E::Float64, ν::Float64, D::Float64, d₀::Float64, C::Gridap.TensorValues.SymFourthOrderTensorValue{3, Float64, 36}}}}, reffe::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}; kwargs::@Kwargs{trian::BodyFittedTriangulation{3, 3, CartesianDiscreteModel{3, Float64, Main.YagoBenchmark3DFreq.var"#7#8"{Int64, @NamedTuple{L::Float64, B::Float64, H::Float64, hb::Float64, nLΩ::Int64, nBΩ::Int64, LΩ::Float64, BΩ::Float64, xb₀::Float64, xb₁::Float64, yb₀::Float64, yb₁::Float64, g::Float64, ρ::Float64, ρb::Float64, E::Float64, ν::Float64, D::Float64, d₀::Float64, C::Gridap.TensorValues.SymFourthOrderTensorValue{3, Float64, 36}}}}, CartesianGrid{3, Float64, Main.YagoBenchmark3DFreq.var"#7#8"{Int64, @NamedTuple{L::Float64, B::Float64, H::Float64, hb::Float64, nLΩ::Int64, nBΩ::Int64, LΩ::Float64, BΩ::Float64, xb₀::Float64, xb₁::Float64, yb₀::Float64, yb₁::Float64, g::Float64, ρ::Float64, ρb::Float64, E::Float64, ν::Float64, D::Float64, d₀::Float64, C::Gridap.TensorValues.SymFourthOrderTensorValue{3, Float64, 36}}}}, Gridap.Arrays.IdentityVector{Int64}}, conformity::Symbol, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:19 [33] FESpace(t::BodyFittedTriangulation{3, 3, CartesianDiscreteModel{3, Float64, Main.YagoBenchmark3DFreq.var"#7#8"{Int64, @NamedTuple{L::Float64, B::Float64, H::Float64, hb::Float64, nLΩ::Int64, nBΩ::Int64, LΩ::Float64, BΩ::Float64, xb₀::Float64, xb₁::Float64, yb₀::Float64, yb₁::Float64, g::Float64, ρ::Float64, ρb::Float64, E::Float64, ν::Float64, D::Float64, d₀::Float64, C::Gridap.TensorValues.SymFourthOrderTensorValue{3, Float64, 36}}}}, CartesianGrid{3, Float64, Main.YagoBenchmark3DFreq.var"#7#8"{Int64, @NamedTuple{L::Float64, B::Float64, H::Float64, hb::Float64, nLΩ::Int64, nBΩ::Int64, LΩ::Float64, BΩ::Float64, xb₀::Float64, xb₁::Float64, yb₀::Float64, yb₁::Float64, g::Float64, ρ::Float64, ρb::Float64, E::Float64, ν::Float64, D::Float64, d₀::Float64, C::Gridap.TensorValues.SymFourthOrderTensorValue{3, Float64, 36}}}}, Gridap.Arrays.IdentityVector{Int64}}, reffes::Tuple{Lagrangian, Tuple{DataType, Int64}, @Kwargs{}}; trian::Nothing, kwargs::@Kwargs{conformity::Symbol, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:11 [inlined] [34] TestFESpace(::BodyFittedTriangulation{3, 3, CartesianDiscreteModel{3, Float64, Main.YagoBenchmark3DFreq.var"#7#8"{Int64, @NamedTuple{L::Float64, B::Float64, H::Float64, hb::Float64, nLΩ::Int64, nBΩ::Int64, LΩ::Float64, BΩ::Float64, xb₀::Float64, xb₁::Float64, yb₀::Float64, yb₁::Float64, g::Float64, ρ::Float64, ρb::Float64, E::Float64, ν::Float64, D::Float64, d₀::Float64, C::Gridap.TensorValues.SymFourthOrderTensorValue{3, Float64, 36}}}}, CartesianGrid{3, Float64, Main.YagoBenchmark3DFreq.var"#7#8"{Int64, @NamedTuple{L::Float64, B::Float64, H::Float64, hb::Float64, nLΩ::Int64, nBΩ::Int64, LΩ::Float64, BΩ::Float64, xb₀::Float64, xb₁::Float64, yb₀::Float64, yb₁::Float64, g::Float64, ρ::Float64, ρb::Float64, E::Float64, ν::Float64, D::Float64, d₀::Float64, C::Gridap.TensorValues.SymFourthOrderTensorValue{3, Float64, 36}}}}, Gridap.Arrays.IdentityVector{Int64}}, ::Vararg{Any}; kwargs::@Kwargs{conformity::Symbol, vector_type::DataType}) @ Gridap.FESpaces ~/.julia/packages/Gridap/FDYkr/src/FESpaces/FESpaceFactories.jl:5 [35] run_yago_3d_freq(; nx::Int64, ny::Int64, nz::Int64, order::Int64, λfactor::Float64, dfactor::Float64, vtk_output::Bool, verbose::Bool) @ Main.YagoBenchmark3DFreq ~/.julia/packages/HydroElasticFEM/nJNLa/examples/YagoBenchmark3DFreq.jl:145 [36] top-level scope @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/test_yago_3d_freq.jl:58 [37] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [38] macro expansion @ ~/.julia/packages/HydroElasticFEM/nJNLa/test/examples/test_yago_3d_freq.jl:58 [inlined] Test Summary: | Pass Error Total Time HydroElasticFEM | 861 28 889 41m23.8s Geometry | 257 257 3m56.2s Physics - module interface | 5 5 1.2s Physics - Physics modules | 68 68 2m27.7s 3D sloshing | 24 24 3m18.0s Beam-plate consistency | 39 1 40 28.2s Beam-plate 1D consistency | 3 3 1.2s KirchhoffLovePlate 2D tensor — major symmetry | 36 36 0.3s TimoshenkoBeam → EulerBernoulli thin limit | 1 1 25.4s KirchhoffLovePlate | 166 5 171 12.8s KirchhoffLovePlate — struct and traits | 9 9 0.2s KirchhoffLovePlate — constitutive tensor symmetry | 130 130 0.1s KirchhoffLovePlate — simply-supported square, uniform load | 1 1 8.7s KirchhoffLovePlate — 1D manifold (beam reduction) | 3 3 0.0s KirchhoffLovePlate — build_kl_tensor argument validation | 3 3 0.0s KirchhoffLovePlate — constitutive tensor ρ scaling | 16 16 0.0s KirchhoffLovePlate — check_major_symmetry | 2 2 0.3s KirchhoffLovePlate — equivalent_beam_rigidity | 2 2 0.0s KirchhoffLovePlate — mass form integral | 1 1 1.0s KirchhoffLovePlate — print_parameters | 1 1 1.0s KirchhoffLovePlate — Hessian SIPG: stiffness matrix symmetry | 1 1 0.1s KirchhoffLovePlate — Hessian SIPG: ν=0 simply-supported | 1 1 0.1s KirchhoffLovePlate — Hessian SIPG: p-refinement | 1 1 0.1s TimoshenkoBeam | 21 4 25 7.5s TimoshenkoBeam — struct and traits | 20 20 0.4s TimoshenkoBeam — print_parameters | 1 1 0.1s TimoshenkoBeam — combined bending+shear (h/L = 0.1) | 1 1 5.8s TimoshenkoBeam — thin-limit convergence to Euler-Bernoulli (h/L = 0.01) | 1 1 0.1s TimoshenkoBeam — locking-free with mixed interpolation (h/L = 0.001) | 1 1 0.1s TimoshenkoBeam — mass form (partition-of-unity) | 1 1 0.8s FEOperators | 20 20 4m57.7s FESpaceAssembly | 33 1 34 18.3s FESpaceConfig defaults and overrides | 13 13 0.1s Entity fe field defaults | 5 5 0.0s Entity fe field overrides | 2 2 0.1s build_fe_spaces — 3-field coupled | 6 6 4.2s build_fe_spaces — beam with Dirichlet | 1 1 4.5s build_fe_spaces — mixed entities with resonator array | 5 5 5.6s build_fe_spaces — integration with weak forms | 2 2 3.7s Simulation | 80 80 11m44.8s Utilities | 4 4 1.3s Time-domain membrane+LRMM | 1 1 10.1s Time-domain membrane+damping zone package API | 19 19 9m52.9s EulerBernoulliBeam weak forms | 9 9 26.0s Simply-supported beam — uniform load | 1 1 15.1s Clamped-clamped beam — uniform load | 1 1 0.1s Deflection scaling with L and EIᵨ | 1 1 0.1s Mesh convergence | 1 1 0.1s Zero load — zero deflection | 1 1 0.1s Joint kᵣ=0 equals no-joint beam | 1 1 0.3s Joint spring keeps response close to baseline | 1 1 5.0s Rigid joint approaches monolithic deflection | 1 1 5.1s Joint — symmetric load preserves symmetry | 1 1 0.1s Khabakhpasheva beam-joint (two stiffness cases) | 4 4 51.0s ξ = 0 (no spring) | 1 1 42.3s ξ = 625 (finite spring) | 1 1 0.2s Both cases share the same wave parameters | 1 1 0.2s run_khabakhpasheva_two_cases wrapper | 1 1 8.3s Liu VLFS benchmark | 9 2 11 38.9s Mesh generation | 9 9 3.7s Case ω = 0.4 rad/s | 1 1 34.3s Case ω = 0.8 rad/s | 1 1 0.9s Yago 3D freq - graded mesh | 2 2 4.7s Yago 3D freq - plate mask | 33 33 20.5s Yago 3D freq - C tensor symmetry | 81 81 0.0s Yago 3D freq - warm-up solve | 1 1 27.3s RNG of the outermost testset: Random.Xoshiro(0x9652aafc9333c7d5, 0xbcc4cb4a16a2e75a, 0x3d293e8bf136d512, 0x1e5b7db1969bd45f, 0xd2efb571ab7175d6) ERROR: LoadError: Some tests did not pass: 861 passed, 0 failed, 28 errored, 0 broken. in expression starting at /home/pkgeval/.julia/packages/HydroElasticFEM/nJNLa/test/runtests.jl:3 Testing failed after 2484.47s ERROR: LoadError: Package HydroElasticFEM 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 2696.08s: package tests unexpectedly errored