Package evaluation to test NonlinearIntegrators on Julia 1.14.0-DEV.3081 (21a70e450d*) started at 2026-09-02T07:37:29.408 ################################################################################ # Set-up # Installing PkgEval dependencies (TestEnv)... Activating project at `~/.julia/environments/v1.14` Set-up completed after 30.65s ################################################################################ # Installation # Installing NonlinearIntegrators... Resolving package versions... Installed CommonWorldInvalidations ── v1.2.0 Installed CompositionsBase ────────── v0.1.2 Installed ForwardDiff ─────────────── v1.4.5 Installed DataStructures ──────────── v0.19.6 Installed DiffResults ─────────────── v1.1.0 Installed TermInterface ───────────── v2.0.0 Installed QuadratureRules ─────────── v0.2.1 Installed MacroTools ──────────────── v0.5.16 Installed JpegTurbo_jll ───────────── v3.2.0+1 Installed Adapt ───────────────────── v4.7.0 Installed Ghostscript_jll ─────────── v9.55.1+0 Installed FillArrays ──────────────── v1.17.0 Installed Bijections ──────────────── v0.2.2 Installed AbstractTrees ───────────── v0.4.5 Installed RuntimeGeneratedFunctions ─ v0.5.25 Installed ConstructionBase ────────── v1.6.0 Installed ArnoldiMethod ───────────── v0.4.0 Installed QuasiArrays ─────────────── v0.13.10 Installed ExprTools ───────────────── v0.1.11 Installed DynamicPolynomials ──────── v0.6.8 Installed SymbolicIndexingInterface ─ v0.3.55 Installed SymbolicUtils ───────────── v4.46.1 Installed ArrayInterface ──────────── v7.30.1 Installed OrderedCollections ──────── v2.0.1 Installed Combinatorics ───────────── v1.0.2 Installed Compat ──────────────────── v4.18.1 Installed NonlinearIntegrators ────── v0.4.3 Installed Statistics ──────────────── v1.11.4 Installed RecipesBase ─────────────── v1.3.4 Installed CompactBasisFunctions ───── v0.3.1 Installed DomainSets ──────────────── v0.8.1 Installed GeometricSolutions ──────── v0.6.5 Installed StatsAPI ────────────────── v1.8.0 Installed ReadOnlyArrays ──────────── v0.2.0 Installed LazyArrays ──────────────── v2.12.0 Installed Atomix ──────────────────── v1.1.3 Installed GeometricEquations ──────── v0.21.2 Installed ExproniconLite ──────────── v0.10.14 Installed PrecompileTools ─────────── v1.3.4 Installed AbstractPlutoDingetjes ──── v1.4.0 Installed CommonSubexpressions ────── v0.3.1 Installed TaskLocalValues ─────────── v0.1.3 Installed FastGaussQuadrature ─────── v1.3.0 Installed StaticArrays ────────────── v1.9.19 Installed OffsetArrays ────────────── v1.17.0 Installed StaticArraysCore ────────── v1.4.4 Installed ChainRulesCore ──────────── v1.26.1 Installed GPUArraysCore ───────────── v0.2.0 Installed IrrationalConstants ─────── v0.2.6 Installed Distances ───────────────── v0.10.12 Installed AbstractFFTs ────────────── v1.5.0 Installed Latexify ────────────────── v0.16.12 Installed ContinuumArrays ─────────── v0.20.10 Installed MultivariatePolynomials ─── v0.5.19 Installed Symbolics ───────────────── v7.39.0 Installed IntegerMathUtils ────────── v0.1.4 Installed Infinities ──────────────── v0.1.12 Installed NaNMath ─────────────────── v1.1.4 Installed GeometricBase ───────────── v0.14.9 Installed SimpleTraits ────────────── v0.9.6 Installed SciMLPublic ─────────────── v1.3.0 Installed Requires ────────────────── v1.3.1 Installed ArrayLayouts ────────────── v1.12.2 Installed LogExpFunctions ─────────── v1.0.1 Installed DiffRules ───────────────── v1.16.0 Installed OpenSpecFun_jll ─────────── v0.5.6+0 Installed WeakCacheSets ───────────── v0.1.0 Installed Parameters ──────────────── v0.13.1 Installed StarAlgebras ────────────── v0.3.0 Installed FunctionMaps ────────────── v0.1.2 Installed KernelAbstractions ──────── v0.9.42 Installed UnsafeAtomics ───────────── v0.3.2 Installed BlockArrays ─────────────── v1.10.0 Installed EnumX ───────────────────── v1.0.7 Installed InverseFunctions ────────── v0.1.17 Installed NeuralNetworkParameters ─── v0.3.0 Installed Reexport ────────────────── v1.2.2 Installed SpecialFunctions ────────── v2.9.0 Installed AbstractNeuralNetworks ──── v0.8.0 Installed GeometricIntegratorsBase ── v0.6.4 Installed BandedMatrices ──────────── v1.12.0 Installed SafeTestsets ────────────── v0.1.0 Installed CompositeTypes ──────────── v0.1.4 Installed IntervalSets ────────────── v0.7.14 Installed Jieko ───────────────────── v0.2.1 Installed Setfield ────────────────── v1.1.2 Installed MutableArithmetics ──────── v1.8.0 Installed Preferences ─────────────── v1.5.2 Installed Moshi ───────────────────── v0.3.12 Installed ZygoteRules ─────────────── v0.2.8 Installed LaTeXStrings ────────────── v1.4.1 Installed Polynomials ─────────────── v4.0.11 Installed JLLWrappers ─────────────── v1.8.0 Installed SymbolicLimits ──────────── v1.2.1 Installed Primes ──────────────────── v0.5.7 Installed SimpleSolvers ───────────── v0.13.2 Installed UnPack ──────────────────── v1.0.2 Installed Format ──────────────────── v1.3.7 Installed InfiniteArrays ──────────── v0.15.15 Installed SymbolicNeuralNetworks ──── v0.8.1 Installed ADTypes ─────────────────── v1.24.0 Installed GeometricOptimizers ─────── v0.7.0 Installed Accessors ───────────────── v0.1.45 Installed DocStringExtensions ─────── v0.9.5 Installed Graphs ──────────────────── v1.14.0 Installed Inflate ─────────────────── v0.1.5 Installing 3 artifacts Installed artifact OpenSpecFun 105.4 KiB Installed artifact JpegTurbo 713.4 KiB Installed artifact Ghostscript 30.0 MiB Updating `~/.julia/environments/v1.14/Project.toml` [4ad56de4] + NonlinearIntegrators v0.4.3 Updating `~/.julia/environments/v1.14/Manifest.toml` [47edcb42] + ADTypes v1.24.0 [621f4979] + AbstractFFTs v1.5.0 [60874f82] + AbstractNeuralNetworks v0.8.0 [6e696c72] + AbstractPlutoDingetjes v1.4.0 [1520ce14] + AbstractTrees v0.4.5 [7d9f7c33] + Accessors v0.1.45 [79e6a3ab] + Adapt v4.7.0 [ec485272] + ArnoldiMethod v0.4.0 [4fba245c] + ArrayInterface v7.30.1 [4c555306] + ArrayLayouts v1.12.2 [a9b6321e] + Atomix v1.1.3 [aae01518] + BandedMatrices v1.12.0 [e2ed5e7c] + Bijections v0.2.2 [8e7c35d0] + BlockArrays v1.10.0 [d360d2e6] + ChainRulesCore v1.26.1 ⌅ [861a8166] + Combinatorics v1.0.2 [bbf7d656] + CommonSubexpressions v0.3.1 [f70d9fcc] + CommonWorldInvalidations v1.2.0 [a09551c4] + CompactBasisFunctions v0.3.1 [34da2185] + Compat v4.18.1 [b152e2b5] + CompositeTypes v0.1.4 [a33af91c] + CompositionsBase v0.1.2 [187b0558] + ConstructionBase v1.6.0 [7ae1f121] + ContinuumArrays v0.20.10 [864edb3b] + DataStructures v0.19.6 [163ba53b] + DiffResults v1.1.0 [b552c78f] + DiffRules v1.16.0 [b4f34e82] + Distances v0.10.12 [ffbed154] + DocStringExtensions v0.9.5 [5b8099bc] + DomainSets v0.8.1 [7c1d4256] + DynamicPolynomials v0.6.8 [4e289a0a] + EnumX v1.0.7 [e2ba6199] + ExprTools v0.1.11 [55351af7] + ExproniconLite v0.10.14 [442a2c76] + FastGaussQuadrature v1.3.0 [1a297f60] + FillArrays v1.17.0 [1fa38f19] + Format v1.3.7 [f6369f11] + ForwardDiff v1.4.5 [a85aefff] + FunctionMaps v0.1.2 [46192b85] + GPUArraysCore v0.2.0 [9a0b12b7] + GeometricBase v0.14.9 [c85262ba] + GeometricEquations v0.21.2 [71212ab4] + GeometricIntegratorsBase v0.6.4 [fc236c15] + GeometricOptimizers v0.7.0 [7843afe4] + GeometricSolutions v0.6.5 [86223c79] + Graphs v1.14.0 [4858937d] + InfiniteArrays v0.15.15 [e1ba4f0e] + Infinities v0.1.12 [d25df0c9] + Inflate v0.1.5 [18e54dd8] + IntegerMathUtils v0.1.4 [8197267c] + IntervalSets v0.7.14 [3587e190] + InverseFunctions v0.1.17 [92d709cd] + IrrationalConstants v0.2.6 [692b3bcd] + JLLWrappers v1.8.0 [ae98c720] + Jieko v0.2.1 [63c18a36] + KernelAbstractions v0.9.42 [b964fa9f] + LaTeXStrings v1.4.1 [23fbe1c1] + Latexify v0.16.12 [5078a376] + LazyArrays v2.12.0 [2ab3a3ac] + LogExpFunctions v1.0.1 [1914dd2f] + MacroTools v0.5.16 [2e0e35c7] + Moshi v0.3.12 [102ac46a] + MultivariatePolynomials v0.5.19 [d8a4904e] + MutableArithmetics v1.8.0 [77ba4419] + NaNMath v1.1.4 [67f4d93a] + NeuralNetworkParameters v0.3.0 [4ad56de4] + NonlinearIntegrators v0.4.3 [6fe1bfb0] + OffsetArrays v1.17.0 [bac558e1] + OrderedCollections v2.0.1 [d96e819e] + Parameters v0.13.1 ⌃ [f27b6e38] + Polynomials v4.0.11 [aea7be01] + PrecompileTools v1.3.4 [21216c6a] + Preferences v1.5.2 [27ebfcd6] + Primes v0.5.7 [a08977f5] + QuadratureRules v0.2.1 [c4ea9172] + QuasiArrays v0.13.10 [988b38a3] + ReadOnlyArrays v0.2.0 [3cdcf5f2] + RecipesBase v1.3.4 [189a3867] + Reexport v1.2.2 [ae029012] + Requires v1.3.1 [7e49a35a] + RuntimeGeneratedFunctions v0.5.25 [1bc83da4] + SafeTestsets v0.1.0 [431bcebd] + SciMLPublic v1.3.0 [efcf1570] + Setfield v1.1.2 [36b790f5] + SimpleSolvers v0.13.2 [699a6c99] + SimpleTraits v0.9.6 [276daf66] + SpecialFunctions v2.9.0 [0c0c59c1] + StarAlgebras v0.3.0 [90137ffa] + StaticArrays v1.9.19 [1e83bf80] + StaticArraysCore v1.4.4 [10745b16] + Statistics v1.11.4 [82ae8749] + StatsAPI v1.8.0 [2efcf032] + SymbolicIndexingInterface v0.3.55 [19f23fe9] + SymbolicLimits v1.2.1 [aed23131] + SymbolicNeuralNetworks v0.8.1 ⌃ [d1185830] + SymbolicUtils v4.46.1 [0c5d862f] + Symbolics v7.39.0 [ed4db957] + TaskLocalValues v0.1.3 [8ea1fca8] + TermInterface v2.0.0 [3a884ed6] + UnPack v1.0.2 [013be700] + UnsafeAtomics v0.3.2 [d30d5f5c] + WeakCacheSets v0.1.0 [700de1a5] + ZygoteRules v0.2.8 [61579ee1] + Ghostscript_jll v9.55.1+0 [aacddb02] + JpegTurbo_jll v3.2.0+1 [efe28fd5] + OpenSpecFun_jll v0.5.6+0 [56f22d72] + Artifacts v1.11.0 [2a0f44e3] + Base64 v1.11.0 [ade2ca70] + Dates v1.11.0 [9fa8497b] + Future v1.11.0 [b77e0a4c] + InteractiveUtils v1.11.0 [ac6e5ff7] + JuliaSyntaxHighlighting v1.13.0 [8f399da3] + Libdl v1.11.0 [37e2e46d] + LinearAlgebra v1.14.0 [56ddb016] + Logging v1.11.0 [d6f4376e] + Markdown v1.11.0 [de0858da] + Printf v1.11.0 [9a3f8284] + Random v1.11.0 [ea8e919c] + SHA v1.13.0 [9e88b42a] + Serialization v1.11.0 [2f01184e] + SparseArrays v1.13.0 [f489334b] + StyledStrings v1.13.0 [fa267f1f] + TOML v1.0.3 [8dfed614] + Test v1.11.0 [cf7118a7] + UUIDs v1.11.0 [4ec0a83e] + Unicode v1.11.0 [e66e0078] + CompilerSupportLibraries_jll v1.5.7+0 [4536629a] + OpenBLAS_jll v0.3.34+0 [05823500] + OpenLibm_jll v0.8.7+0 [bea87d4a] + SuiteSparse_jll v7.10.1+0 [83775a58] + Zlib_jll v1.3.2+0 [8e850b90] + libblastrampoline_jll v5.15.0+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` Installation completed after 16.4s ################################################################################ # Precompilation # Precompiling PkgEval dependencies... Precompiling project... 4.3 s ✓ TestEnv 1 dependency successfully precompiled in 5 seconds. 27 already precompiled. Precompiling package dependencies... Precompiling project... 4.1 s ✓ MacroTools 0.7 s ✓ AbstractPlutoDingetjes 0.6 s ✓ Reexport 1.2 s ✓ ConstructionBase 2.5 s ✓ IrrationalConstants 0.8 s ✓ StatsAPI 0.8 s ✓ LazilyInitializedFields 2.1 s ✓ Format 0.8 s ✓ ReadOnlyArrays 0.6 s ✓ WeakCacheSets 0.9 s ✓ IntervalSets 1.6 s ✓ Combinatorics 34.5 s ✓ JuliaSyntax 0.9 s ✓ Inflate 0.7 s ✓ TermInterface 1.1 s ✓ Infinities 1.0 s ✓ TranscodingStreams 1.1 s ✓ LaTeXStrings 1.0 s ✓ Statistics 0.8 s ✓ StaticArraysCore 0.7 s ✓ CompositeTypes 0.6 s ✓ TaskLocalValues 0.7 s ✓ ANSIColoredPrinters 1.3 s ✓ Adapt 3.8 s ✓ ExproniconLite 2.9 s ✓ UnsafeAtomics 0.8 s ✓ InverseFunctions 0.5 s ✓ SafeTestsets 0.5 s ✓ CompositionsBase 1.2 s ✓ AbstractTrees 1.1 s ✓ AbstractFFTs 0.8 s ✓ EnumX 1.2 s ✓ Bijections 2.0 s ✓ FillArrays 0.5 s ✓ IntegerMathUtils 0.8 s ✓ ExprTools 0.9 s ✓ UnPack 2.5 s ✓ OrderedCollections 1.1 s ✓ DocStringExtensions 1.2 s ✓ OffsetArrays 1.5 s ✓ Compiler 0.9 s ✓ GeometricBase 0.7 s ✓ IOCapture 0.6 s ✓ NaNMath 0.7 s ✓ Requires 2.0 s ✓ StructUtils 1.0 s ✓ Compat 1.1 s ✓ Preferences 10.8 s ✓ MutableArithmetics 2.8 s ✓ CodeTracking 0.9 s ✓ CommonSubexpressions 2.0 s ✓ SimpleTraits 0.5 s ✓ ConstructionBase → ConstructionBaseLinearAlgebraExt 4.6 s ✓ RegistryInstances 0.5 s ✓ IntervalSets → IntervalSetsRandomExt 0.5 s ✓ ConstructionBase → ConstructionBaseIntervalSetsExt 0.8 s ✓ CodecZlib 1.7 s ✓ Statistics → SparseArraysExt 1.2 s ✓ Distances 0.6 s ✓ IntervalSets → IntervalSetsStatisticsExt 0.6 s ✓ DiffResults 0.8 s ✓ ArrayInterface 1.4 s ✓ Adapt → AdaptSparseArraysExt 0.8 s ✓ GPUArraysCore 2.4 s ✓ Jieko 0.6 s ✓ Atomix 0.9 s ✓ InverseFunctions → InverseFunctionsDatesExt 1.5 s ✓ InverseFunctions → InverseFunctionsTestExt 0.5 s ✓ CompositionsBase → CompositionsBaseInverseFunctionsExt 1.5 s ✓ MarkdownAST 3.2 s ✓ AbstractFFTs → AbstractFFTsTestExt 1.9 s ✓ FillArrays → FillArraysSparseArraysExt 1.0 s ✓ FillArrays → FillArraysStatisticsExt 0.9 s ✓ Primes 0.7 s ✓ Parameters 3.6 s ✓ DataStructures 1.1 s ✓ LogExpFunctions 0.6 s ✓ OffsetArrays → OffsetArraysAdaptExt 0.9 s ✓ StructUtils → StructUtilsStaticArraysCoreExt 0.7 s ✓ Compat → CompatLinearAlgebraExt 1.4 s ✓ PrecompileTools 1.4 s ✓ JLLWrappers 5.9 s ✓ StarAlgebras ERROR: LoadError: MethodError: no method matching nteltype(::Core.SimpleVector) The function `nteltype` exists, but no method is defined for this combination of argument types. Closest candidates are: nteltype(!Matched::Type{NamedTuple{names, T}} where names) where T @ Base namedtuple.jl:233 nteltype(!Matched::Type) @ Base namedtuple.jl:232 Stacktrace: [1] prepare_call(f::Any, allargs::Vector{Any}; enter_generated::Bool, method_table::Nothing) @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/construct.jl:256 [2] get_call_framecode(fargs::Vector{Any}, parentframe::JuliaInterpreter.FrameCode, idx::Int64; enter_generated::Bool, method_table::Nothing) @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/localmethtable.jl:65 [3] evaluate_call!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, fargs::Vector{Any}, enter_generated::Bool) @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:277 [4] evaluate_call!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, call_expr::Expr, enter_generated::Bool) @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:256 [5] evaluate_call!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, call_expr::Expr) @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:249 [6] eval_rhs(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, node::Expr) @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:406 [7] step_expr!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, node::Any, istoplevel::Bool) @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:569 [8] step_expr!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, istoplevel::Bool) @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:627 [9] finish!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, istoplevel::Bool) @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/commands.jl:14 [10] finish_and_return!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, istoplevel::Bool) @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/commands.jl:30 [11] evaluate_call!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, fargs::Vector{Any}, enter_generated::Bool) @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:290 [12] evaluate_call!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, call_expr::Expr, enter_generated::Bool) @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:256 [13] evaluate_call!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, call_expr::Expr) @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:249 [14] eval_rhs(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, node::Expr) @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:406 [15] step_expr!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, node::Any, istoplevel::Bool) @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:569 [16] step_expr!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, istoplevel::Bool) @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:627 [17] finish!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, istoplevel::Bool) @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/commands.jl:14 [18] finish_and_return!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, istoplevel::Bool) @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/commands.jl:30 [19] evaluate_call!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, fargs::Vector{Any}, enter_generated::Bool) @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:290 [20] evaluate_call!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, call_expr::Expr, enter_generated::Bool) @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:256 [21] evaluate_call!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, call_expr::Expr) @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:249 [22] eval_rhs(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, node::Expr) @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:406 [23] step_expr!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, node::Any, istoplevel::Bool) @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:569 [24] step_expr!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, istoplevel::Bool) @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:627 [25] finish!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, istoplevel::Bool) @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/commands.jl:14 [26] finish_and_return!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, istoplevel::Bool) @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/commands.jl:30 [27] evaluate_call!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, fargs::Vector{Any}, enter_generated::Bool) @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:290 [28] evaluate_call!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, call_expr::Expr, enter_generated::Bool) @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:256 [29] evaluate_call!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, call_expr::Expr) @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:249 [30] eval_rhs(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, node::Expr) @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:406 [31] step_expr!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, node::Any, istoplevel::Bool) @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:569 [32] step_expr!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, istoplevel::Bool) @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:627 [33] finish!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, istoplevel::Bool) @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/commands.jl:14 [34] finish_and_return!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, istoplevel::Bool) @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/commands.jl:30 [35] macro expansion @ ~/.julia/packages/JuliaInterpreter/bSt3F/src/construct.jl:764 [inlined] [36] _precompile_() @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/precompile.jl:7 [37] top-level scope @ ~/.julia/packages/JuliaInterpreter/bSt3F/src/packagedef.jl:153 [38] include(mapexpr::Function, mod::Module, _path::String) @ Base Base.jl:335 [39] top-level scope @ ~/.julia/packages/JuliaInterpreter/bSt3F/src/JuliaInterpreter.jl:14 [40] include(mod::Module, _path::String) @ Base Base.jl:334 [41] top-level scope @ stdin:5 in expression starting at /home/pkgeval/.julia/packages/JuliaInterpreter/bSt3F/src/packagedef.jl:153 in expression starting at /home/pkgeval/.julia/packages/JuliaInterpreter/bSt3F/src/JuliaInterpreter.jl:1 in expression starting at stdin:5 ✗ JuliaInterpreter 2.0 s ✓ Setfield 1.9 s ✓ Distances → DistancesSparseArraysExt 0.9 s ✓ ArrayInterface → ArrayInterfaceFillArraysExt 0.5 s ✓ ArrayInterface → ArrayInterfaceStaticArraysCoreExt 1.5 s ✓ ArrayInterface → ArrayInterfaceSparseArraysExt 0.5 s ✓ ArrayInterface → ArrayInterfaceGPUArraysCoreExt 16.9 s ✓ Moshi 4.4 s ✓ Accessors 3.8 s ✓ GeometricEquations 0.6 s ✓ LogExpFunctions → LogExpFunctionsInverseFunctionsExt 2.0 s ✓ ChainRulesCore 6.2 s ✓ Aqua 15.6 s ✓ StaticArrays 1.6 s ✓ SciMLPublic 1.6 s ✓ CommonWorldInvalidations 3.0 s ✓ RecipesBase 1.8 s ✓ ADTypes 11.0 s ✓ Parsers 3.7 s ✓ RuntimeGeneratedFunctions 1.8 s ✓ OpenSpecFun_jll 1.1 s ✓ Git_LFS_jll 1.2 s ✓ OpenSSH_jll 1.2 s ✓ Libiconv_jll 1.2 s ✓ Expat_jll 1.3 s ✓ JpegTurbo_jll 5.4 s ✓ MultivariatePolynomials ERROR: LoadError: Precompiled image Base.PkgId(Base.UUID("aa1ae85d-cabe-5617-a682-6adf51b2e16a"), "JuliaInterpreter") not available with flags CacheFlags(; use_pkgimages=false, debug_level=1, check_bounds=1, inline=true, opt_level=0) Stacktrace: [1] error(s::String) @ Base error.jl:56 [2] require(into::Module, mod::Symbol) @ Base loading.jl:2661 [inlined] [3] top-level scope @ ~/.julia/packages/LoweredCodeUtils/yvcyV/src/LoweredCodeUtils.jl:14 [4] include(mod::Module, _path::String) @ Base Base.jl:334 [5] top-level scope @ stdin:5 in expression starting at /home/pkgeval/.julia/packages/LoweredCodeUtils/yvcyV/src/LoweredCodeUtils.jl:1 in expression starting at stdin:5 ✗ LoweredCodeUtils 1.8 s ✓ Accessors → TestExt 2.3 s ✓ Accessors → IntervalSetsExt 1.6 s ✓ Accessors → LinearAlgebraExt 2.0 s ✓ GeometricSolutions 1.5 s ✓ ChainRulesCore → ChainRulesCoreSparseArraysExt 1.1 s ✓ NeuralNetworkParameters 1.5 s ✓ ZygoteRules 0.7 s ✓ AbstractFFTs → AbstractFFTsChainRulesCoreExt 1.4 s ✓ Distances → DistancesChainRulesCoreExt 0.5 s ✓ ArrayInterface → ArrayInterfaceChainRulesCoreExt 2.8 s ✓ LogExpFunctions → LogExpFunctionsChainRulesCoreExt 2.9 s ✓ ArnoldiMethod 5.5 s ✓ StaticArrays → StaticArraysStatisticsExt 1.3 s ✓ StaticArrays → StaticArraysChainRulesCoreExt 1.6 s ✓ ConstructionBase → ConstructionBaseStaticArraysExt 3.0 s ✓ FunctionMaps 1.4 s ✓ Adapt → AdaptStaticArraysExt 2.1 s ✓ FillArrays → FillArraysStaticArraysExt 1.5 s ✓ Accessors → StaticArraysExt 36.4 s ✓ Polynomials 0.9 s ✓ IntervalSets → IntervalSetsRecipesBaseExt 0.8 s ✓ ADTypes → ADTypesConstructionBaseExt 0.8 s ✓ ADTypes → ADTypesChainRulesCoreExt 9.3 s ✓ JSON 5.2 s ✓ SpecialFunctions 1.4 s ✓ Git_jll 1.2 s ✓ Ghostscript_jll 5.7 s ✓ DynamicPolynomials 5.4 s ✓ MultivariatePolynomials → MultivariatePolynomialsChainRulesCoreExt WARNING: Imported binding Compiler.ConstCallInfo was undeclared at import time during import to JET. WARNING: Imported binding Compiler.WorldView was undeclared at import time during import to JET. ERROR: LoadError: Precompiled image Base.PkgId(Base.UUID("6f1432cf-f94c-5a45-995e-cdbf5db27b0b"), "LoweredCodeUtils") not available with flags CacheFlags(; use_pkgimages=false, debug_level=1, check_bounds=1, inline=true, opt_level=0) Stacktrace: [1] error(s::String) @ Base error.jl:56 [2] require(into::Module, mod::Symbol) @ Base loading.jl:2661 [inlined] [3] top-level scope @ ~/.julia/packages/JET/XRz79/src/JETBase.jl:46 [4] include(mapexpr::Function, mod::Module, _path::String) @ Base Base.jl:335 [5] top-level scope @ ~/.julia/packages/JET/XRz79/src/JET.jl:41 [6] include(mod::Module, _path::String) @ Base Base.jl:334 [7] top-level scope @ stdin:5 in expression starting at /home/pkgeval/.julia/packages/JET/XRz79/src/JETBase.jl:46 in expression starting at /home/pkgeval/.julia/packages/JET/XRz79/src/JET.jl:1 in expression starting at stdin:5 ✗ JET 4.0 s ✓ SymbolicIndexingInterface 0.6 s ✓ NeuralNetworkParameters → ZygoteRulesExt 9.9 s ✓ Graphs 3.6 s ✓ DomainSets 7.7 s ✓ KernelAbstractions 24.3 s ✓ ArrayLayouts 5.7 s ✓ Polynomials → PolynomialsMutableArithmeticsExt 3.8 s ✓ Polynomials → PolynomialsChainRulesCoreExt 3.8 s ✓ SpecialFunctions → SpecialFunctionsChainRulesCoreExt 4.5 s ✓ FastGaussQuadrature 1.1 s ✓ DiffRules 0.8 s ✓ Git 7.0 s ✓ Latexify 119.5 s ✓ SymbolicUtils 1.5 s ✓ DomainSets → DomainSetsRandomExt 3.1 s ✓ KernelAbstractions → SparseArraysExt 2.2 s ✓ KernelAbstractions → LinearAlgebraExt 27.9 s ✓ BandedMatrices 3.3 s ✓ ArrayLayouts → ArrayLayoutsSparseArraysExt 4.7 s ✓ BlockArrays 5.1 s ✓ QuadratureRules 7.2 s ✓ ForwardDiff 54.4 s ✓ Documenter 2.7 s ✓ Latexify → SparseArraysExt 7.6 s ✓ SymbolicUtils → SymbolicUtilsChainRulesCoreExt 71.6 s ✓ SymbolicLimits 2.5 s ✓ AbstractNeuralNetworks 6.5 s ✓ BandedMatrices → BandedMatricesSparseArraysExt 5.0 s ✓ ArrayInterface → ArrayInterfaceBandedMatricesExt 8.4 s ✓ LazyArrays 3.9 s ✓ BlockArrays → BlockArraysAdaptExt 5.2 s ✓ BlockArrays → BlockArraysBandedMatricesExt 3.2 s ✓ ForwardDiff → ForwardDiffStaticArraysExt 81.2 s ✓ Symbolics 5.1 s ✓ LazyArrays → LazyArraysStaticArraysExt 10.9 s ✓ LazyArrays → LazyArraysBandedMatricesExt 5.8 s ✓ LazyArrays → LazyArraysBlockArraysExt 5.2 s ✓ SimpleSolvers 14.4 s ✓ Symbolics → SymbolicsForwardDiffExt 11.1 s ✓ Symbolics → SymbolicsLatexifyExt 10.9 s ✓ Symbolics → SymbolicsStaticArraysExt 7.0 s ✓ InfiniteArrays 9.2 s ✓ QuasiArrays 3.1 s ✓ SimpleSolvers → SimpleSolversNeuralNetworkParametersExt 7.5 s ✓ GeometricIntegratorsBase 13.2 s ✓ EulerLagrange 12.3 s ✓ SymbolicNeuralNetworks 7.4 s ✓ InfiniteArrays → InfiniteArraysBandedMatricesExt 6.4 s ✓ InfiniteArrays → InfiniteArraysBlockArraysExt 5.6 s ✓ InfiniteArrays → InfiniteArraysStatisticsExt 7.2 s ✓ QuasiArrays → QuasiArraysSparseArraysExt 11.7 s ✓ GeometricOptimizers 18.2 s ✓ GeometricProblems 15.4 s ✓ ContinuumArrays 6.3 s ✓ GeometricOptimizers → AbstractNeuralNetworksExt 14.8 s ✓ ContinuumArrays → ContinuumArraysRecipesBaseExt 17.8 s ✓ CompactBasisFunctions 32.8 s ✓ NonlinearIntegrators 196 dependencies successfully precompiled in 1144 seconds. 36 already precompiled. 3 dependencies had output during precompilation: ┌ JET │ WARNING: Imported binding Compiler.ConstCallInfo was undeclared at import time during import to JET. │ WARNING: Imported binding Compiler.WorldView was undeclared at import time during import to JET. │ ERROR: LoadError: Precompiled image Base.PkgId(Base.UUID("6f1432cf-f94c-5a45-995e-cdbf5db27b0b"), "LoweredCodeUtils") not available with flags CacheFlags(; use_pkgimages=false, debug_level=1, check_bounds=1, inline=true, opt_level=0) │ Stacktrace: │ [1] error(s::String) │ @ Base error.jl:56 │ [2] require(into::Module, mod::Symbol) │ @ Base loading.jl:2661 [inlined] │ [3] top-level scope │ @ ~/.julia/packages/JET/XRz79/src/JETBase.jl:46 │ [4] include(mapexpr::Function, mod::Module, _path::String) │ @ Base Base.jl:335 │ [5] top-level scope │ @ ~/.julia/packages/JET/XRz79/src/JET.jl:41 │ [6] include(mod::Module, _path::String) │ @ Base Base.jl:334 │ [7] top-level scope │ @ stdin:5 │ in expression starting at /home/pkgeval/.julia/packages/JET/XRz79/src/JETBase.jl:46 │ in expression starting at /home/pkgeval/.julia/packages/JET/XRz79/src/JET.jl:1 │ in expression starting at stdin:5 └ ┌ LoweredCodeUtils │ ERROR: LoadError: Precompiled image Base.PkgId(Base.UUID("aa1ae85d-cabe-5617-a682-6adf51b2e16a"), "JuliaInterpreter") not available with flags CacheFlags(; use_pkgimages=false, debug_level=1, check_bounds=1, inline=true, opt_level=0) │ Stacktrace: │ [1] error(s::String) │ @ Base error.jl:56 │ [2] require(into::Module, mod::Symbol) │ @ Base loading.jl:2661 [inlined] │ [3] top-level scope │ @ ~/.julia/packages/LoweredCodeUtils/yvcyV/src/LoweredCodeUtils.jl:14 │ [4] include(mod::Module, _path::String) │ @ Base Base.jl:334 │ [5] top-level scope │ @ stdin:5 │ in expression starting at /home/pkgeval/.julia/packages/LoweredCodeUtils/yvcyV/src/LoweredCodeUtils.jl:1 │ in expression starting at stdin:5 └ ┌ JuliaInterpreter │ ERROR: LoadError: MethodError: no method matching nteltype(::Core.SimpleVector) │ The function `nteltype` exists, but no method is defined for this combination of argument types. │ │ Closest candidates are: │ nteltype(!Matched::Type{NamedTuple{names, T}} where names) where T │ @ Base namedtuple.jl:233 │ nteltype(!Matched::Type) │ @ Base namedtuple.jl:232 │ │ Stacktrace: │ [1] prepare_call(f::Any, allargs::Vector{Any}; enter_generated::Bool, method_table::Nothing) │ @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/construct.jl:256 │ [2] get_call_framecode(fargs::Vector{Any}, parentframe::JuliaInterpreter.FrameCode, idx::Int64; enter_generated::Bool, method_table::Nothing) │ @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/localmethtable.jl:65 │ [3] evaluate_call!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, fargs::Vector{Any}, enter_generated::Bool) │ @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:277 │ [4] evaluate_call!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, call_expr::Expr, enter_generated::Bool) │ @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:256 │ [5] evaluate_call!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, call_expr::Expr) │ @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:249 │ [6] eval_rhs(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, node::Expr) │ @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:406 │ [7] step_expr!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, node::Any, istoplevel::Bool) │ @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:569 │ [8] step_expr!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, istoplevel::Bool) │ @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:627 │ [9] finish!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, istoplevel::Bool) │ @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/commands.jl:14 │ [10] finish_and_return!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, istoplevel::Bool) │ @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/commands.jl:30 │ [11] evaluate_call!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, fargs::Vector{Any}, enter_generated::Bool) │ @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:290 │ [12] evaluate_call!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, call_expr::Expr, enter_generated::Bool) │ @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:256 │ [13] evaluate_call!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, call_expr::Expr) │ @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:249 │ [14] eval_rhs(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, node::Expr) │ @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:406 │ [15] step_expr!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, node::Any, istoplevel::Bool) │ @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:569 │ [16] step_expr!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, istoplevel::Bool) │ @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:627 │ [17] finish!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, istoplevel::Bool) │ @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/commands.jl:14 │ [18] finish_and_return!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, istoplevel::Bool) │ @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/commands.jl:30 │ [19] evaluate_call!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, fargs::Vector{Any}, enter_generated::Bool) │ @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:290 │ [20] evaluate_call!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, call_expr::Expr, enter_generated::Bool) │ @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:256 │ [21] evaluate_call!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, call_expr::Expr) │ @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:249 │ [22] eval_rhs(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, node::Expr) │ @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:406 │ [23] step_expr!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, node::Any, istoplevel::Bool) │ @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:569 │ [24] step_expr!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, istoplevel::Bool) │ @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:627 │ [25] finish!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, istoplevel::Bool) │ @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/commands.jl:14 │ [26] finish_and_return!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, istoplevel::Bool) │ @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/commands.jl:30 │ [27] evaluate_call!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, fargs::Vector{Any}, enter_generated::Bool) │ @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:290 │ [28] evaluate_call!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, call_expr::Expr, enter_generated::Bool) │ @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:256 │ [29] evaluate_call!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, call_expr::Expr) │ @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:249 │ [30] eval_rhs(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, node::Expr) │ @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:406 │ [31] step_expr!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, node::Any, istoplevel::Bool) │ @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:569 │ [32] step_expr!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, istoplevel::Bool) │ @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/interpret.jl:627 │ [33] finish!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, istoplevel::Bool) │ @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/commands.jl:14 │ [34] finish_and_return!(interp::JuliaInterpreter.RecursiveInterpreter, frame::JuliaInterpreter.Frame, istoplevel::Bool) │ @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/commands.jl:30 │ [35] macro expansion │ @ ~/.julia/packages/JuliaInterpreter/bSt3F/src/construct.jl:764 [inlined] │ [36] _precompile_() │ @ JuliaInterpreter ~/.julia/packages/JuliaInterpreter/bSt3F/src/precompile.jl:7 │ [37] top-level scope │ @ ~/.julia/packages/JuliaInterpreter/bSt3F/src/packagedef.jl:153 │ [38] include(mapexpr::Function, mod::Module, _path::String) │ @ Base Base.jl:335 │ [39] top-level scope │ @ ~/.julia/packages/JuliaInterpreter/bSt3F/src/JuliaInterpreter.jl:14 │ [40] include(mod::Module, _path::String) │ @ Base Base.jl:334 │ [41] top-level scope │ @ stdin:5 │ in expression starting at /home/pkgeval/.julia/packages/JuliaInterpreter/bSt3F/src/packagedef.jl:153 │ in expression starting at /home/pkgeval/.julia/packages/JuliaInterpreter/bSt3F/src/JuliaInterpreter.jl:1 │ in expression starting at stdin:5 └ ERROR: LoadError: The following 3 packages failed to precompile: JET Failed to precompile JET [c3a54625-cd67-489e-a8e7-0a5a0ff4e31b] to "/home/pkgeval/.julia/compiled/v1.14/JET/jl_PXXn41" (ProcessExited(1)). LoweredCodeUtils Failed to precompile LoweredCodeUtils [6f1432cf-f94c-5a45-995e-cdbf5db27b0b] to "/home/pkgeval/.julia/compiled/v1.14/LoweredCodeUtils/jl_4L6ZTs" (ProcessExited(1)). JuliaInterpreter Failed to precompile JuliaInterpreter [aa1ae85d-cabe-5617-a682-6adf51b2e16a] to "/home/pkgeval/.julia/compiled/v1.14/JuliaInterpreter/jl_FxQROq" (ProcessExited(1)). in expression starting at /PkgEval.jl/scripts/precompile.jl:34 Precompilation failed after 1134.88s ################################################################################ # Testing # Testing NonlinearIntegrators Status `/tmp/jl_pMKGQH/Project.toml` [60874f82] AbstractNeuralNetworks v0.8.0 [4c88cf16] Aqua v0.8.16 [a09551c4] CompactBasisFunctions v0.3.1 [f6369f11] ForwardDiff v1.4.5 [9a0b12b7] GeometricBase v0.14.9 [71212ab4] GeometricIntegratorsBase v0.6.4 [18cb22b4] GeometricProblems v0.8.3 [7843afe4] GeometricSolutions v0.6.5 ⌅ [c3a54625] JET v0.10.15 [67f4d93a] NeuralNetworkParameters v0.3.0 [4ad56de4] NonlinearIntegrators v0.4.3 [a08977f5] QuadratureRules v0.2.1 [36b790f5] SimpleSolvers v0.13.2 [0c5d862f] Symbolics v7.39.0 [37e2e46d] LinearAlgebra v1.14.0 [56ddb016] Logging v1.11.0 [9a3f8284] Random v1.11.0 [8dfed614] Test v1.11.0 Status `/tmp/jl_pMKGQH/Manifest.toml` [47edcb42] ADTypes v1.24.0 [a4c015fc] ANSIColoredPrinters v0.0.1 [621f4979] AbstractFFTs v1.5.0 [60874f82] AbstractNeuralNetworks v0.8.0 [6e696c72] AbstractPlutoDingetjes v1.4.0 [1520ce14] AbstractTrees v0.4.5 [7d9f7c33] Accessors v0.1.45 [79e6a3ab] Adapt v4.7.0 [4c88cf16] Aqua v0.8.16 [ec485272] ArnoldiMethod v0.4.0 [4fba245c] ArrayInterface v7.30.1 [4c555306] ArrayLayouts v1.12.2 [a9b6321e] Atomix v1.1.3 [aae01518] BandedMatrices v1.12.0 [e2ed5e7c] Bijections v0.2.2 [8e7c35d0] BlockArrays v1.10.0 [d360d2e6] ChainRulesCore v1.26.1 [da1fd8a2] CodeTracking v3.0.2 [944b1d66] CodecZlib v0.7.9 ⌅ [861a8166] Combinatorics v1.0.2 [bbf7d656] CommonSubexpressions v0.3.1 [f70d9fcc] CommonWorldInvalidations v1.2.0 [a09551c4] CompactBasisFunctions v0.3.1 [34da2185] Compat v4.18.1 [807dbc54] Compiler v0.1.1 [b152e2b5] CompositeTypes v0.1.4 [a33af91c] CompositionsBase v0.1.2 [187b0558] ConstructionBase v1.6.0 [7ae1f121] ContinuumArrays v0.20.10 [864edb3b] DataStructures v0.19.6 [163ba53b] DiffResults v1.1.0 [b552c78f] DiffRules v1.16.0 [b4f34e82] Distances v0.10.12 [ffbed154] DocStringExtensions v0.9.5 [e30172f5] Documenter v1.18.0 [5b8099bc] DomainSets v0.8.1 [7c1d4256] DynamicPolynomials v0.6.8 [4e289a0a] EnumX v1.0.7 [e4b6a126] EulerLagrange v0.5.1 [e2ba6199] ExprTools v0.1.11 [55351af7] ExproniconLite v0.10.14 [442a2c76] FastGaussQuadrature v1.3.0 [1a297f60] FillArrays v1.17.0 [1fa38f19] Format v1.3.7 [f6369f11] ForwardDiff v1.4.5 [a85aefff] FunctionMaps v0.1.2 [46192b85] GPUArraysCore v0.2.0 [9a0b12b7] GeometricBase v0.14.9 [c85262ba] GeometricEquations v0.21.2 [71212ab4] GeometricIntegratorsBase v0.6.4 [fc236c15] GeometricOptimizers v0.7.0 [18cb22b4] GeometricProblems v0.8.3 [7843afe4] GeometricSolutions v0.6.5 [d7ba0133] Git v1.5.0 [86223c79] Graphs v1.14.0 [b5f81e59] IOCapture v1.0.0 [4858937d] InfiniteArrays v0.15.15 [e1ba4f0e] Infinities v0.1.12 [d25df0c9] Inflate v0.1.5 [18e54dd8] 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Those with ⌃ may be upgradable, but those with ⌅ are restricted by compatibility constraints from upgrading. Testing Running tests... ShallowNet OGA1dStable × IntegratorExtrapolation (Float32): Error During Test at /home/pkgeval/.julia/packages/NonlinearIntegrators/QdSjs/test/unit/network_integrators_unit.jl:32 Got exception outside of a @test SingularException: matrix is singular; factorization failed. Zero pivot found at index 13 Stacktrace: [1] ldiv!(x::Vector{Float32}, lsolver::SimpleSolvers.LinearSolver{Float32, SimpleSolvers.LapackLU, SimpleSolvers.PivotedLUCache{Float32, Matrix{Float32}}}, b::Vector{Float32}) @ SimpleSolvers ~/.julia/packages/SimpleSolvers/RSxww/src/linear/pivoted_lu.jl:133 [2] direction!(d::Vector{Float32}, x::Vector{Float32}, s::SimpleSolvers.NewtonSolver{Float32, SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.LinearProblem{Float32, Vector{Float32}, Matrix{Float32}}, SimpleSolvers.JacobianAutodiff{Float32, typeof(GeometricIntegratorsBase.residual!), ForwardDiff.JacobianConfig{Nothing, Float32, 7, Tuple{Vector{ForwardDiff.Dual{Nothing, Float32, 7}}, Vector{ForwardDiff.Dual{Nothing, Float32, 7}}}}, Vector{Float32}}, SimpleSolvers.LinearSolver{Float32, SimpleSolvers.LapackLU, SimpleSolvers.PivotedLUCache{Float32, Matrix{Float32}}}, SimpleSolvers.Linesearch{Float32, SimpleSolvers.Backtracking{Float32}, SimpleSolvers.LinesearchProblem{Float32, SimpleSolvers.var"#f#linesearch_problem##0"{Float32, SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}, Vector{Float32}, Vector{Float32}}, SimpleSolvers.var"#d#linesearch_problem##1"{SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.JacobianAutodiff{Float32, typeof(GeometricIntegratorsBase.residual!), ForwardDiff.JacobianConfig{Nothing, Float32, 7, Tuple{Vector{ForwardDiff.Dual{Nothing, Float32, 7}}, Vector{ForwardDiff.Dual{Nothing, Float32, 7}}}}, Vector{Float32}}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}, Matrix{Float32}, Vector{Float32}, Vector{Float32}}}, SimpleSolvers.Options{Float32}}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}}, params::Tuple{State{GeometricBase.TimeVariable{Float32, Array{Float32, 0}}, @NamedTuple{q::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}, q̇::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}, ṗ::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{q::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{q::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}, p::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}}, (Val{:q}(), Val{:p}(), Val{:v}(), Val{:q̇}(), Val{:ṗ}()), (Val{:q}(), Val{:p}(), Val{:v}()), (Val{:q}(), Val{:p}())}, @NamedTuple{m::Float32, k::Float32, ω::Float32}, GeometricIntegrator{ShallowNet{Float32, 8, ShallowNetBasis{Float32, var"#relu_k##0#relu_k##1"{Int64}, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, KernelAbstractions.CPU, SymbolicNeuralNetworks.SymbolicNeuralNetwork{AbstractNeuralNetworks.UnknownArchitecture, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, NetworkParameters{Symbolics.Num, (:L1, :L2), Tuple{@NamedTuple{W::Matrix{Symbolics.Num}, b::Vector{Symbolics.Num}}, @NamedTuple{W::Matrix{Symbolics.Num}}}}, Vector{Symbolics.Num}}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xe06bbf4f, 0x4ad81da3, 0x67c1d00a, 0xcbec4786, 0x3bd65808), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xcad91503, 0x9654d830, 0xdbbeeefd, 0x180bac7e, 0x00470590), Expr}, 2}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xc7e150de, 0xda419d55, 0x588a2fb0, 0x07f1ba50, 0xaf86e00f), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}}, IntegratorExtrapolation, OGA{BiasGrid1d, OrthogonalProjection{Nothing}, IncrementalQR}}, GeometricEquations.LODEProblem{Float32, Float32, GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, GeometricEquations.LODE{typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), typeof(GeometricProblems.HarmonicOscillator.ω!), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(lagrangian), @NamedTuple{h::typeof(hamiltonian)}, @NamedTuple{m::DataType, k::DataType, ω::DataType}, GeometricBase.NullPeriodicity}, @NamedTuple{ϑ::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), g::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), ω::typeof(GeometricProblems.HarmonicOscillator.ω!), l::typeof(lagrangian)}, @NamedTuple{}, @NamedTuple{v::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f)}, @NamedTuple{q::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{m::Float32, k::Float32, ω::Float32}}, CacheDict{GeometricEquations.LODEProblem{Float32, Float32, GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, GeometricEquations.LODE{typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), typeof(GeometricProblems.HarmonicOscillator.ω!), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(lagrangian), @NamedTuple{h::typeof(hamiltonian)}, @NamedTuple{m::DataType, k::DataType, ω::DataType}, GeometricBase.NullPeriodicity}, @NamedTuple{ϑ::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), g::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), ω::typeof(GeometricProblems.HarmonicOscillator.ω!), l::typeof(lagrangian)}, @NamedTuple{}, @NamedTuple{v::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f)}, @NamedTuple{q::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{m::Float32, k::Float32, ω::Float32}}, ShallowNet{Float32, 8, ShallowNetBasis{Float32, var"#relu_k##0#relu_k##1"{Int64}, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, KernelAbstractions.CPU, SymbolicNeuralNetworks.SymbolicNeuralNetwork{AbstractNeuralNetworks.UnknownArchitecture, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, NetworkParameters{Symbolics.Num, (:L1, :L2), Tuple{@NamedTuple{W::Matrix{Symbolics.Num}, b::Vector{Symbolics.Num}}, @NamedTuple{W::Matrix{Symbolics.Num}}}}, Vector{Symbolics.Num}}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xe06bbf4f, 0x4ad81da3, 0x67c1d00a, 0xcbec4786, 0x3bd65808), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xcad91503, 0x9654d830, 0xdbbeeefd, 0x180bac7e, 0x00470590), Expr}, 2}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xc7e150de, 0xda419d55, 0x588a2fb0, 0x07f1ba50, 0xaf86e00f), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}}, IntegratorExtrapolation, OGA{BiasGrid1d, OrthogonalProjection{Nothing}, IncrementalQR}}}, SimpleSolvers.NewtonSolver{Float32, SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.LinearProblem{Float32, Vector{Float32}, Matrix{Float32}}, SimpleSolvers.JacobianAutodiff{Float32, typeof(GeometricIntegratorsBase.residual!), ForwardDiff.JacobianConfig{Nothing, Float32, 7, Tuple{Vector{ForwardDiff.Dual{Nothing, Float32, 7}}, Vector{ForwardDiff.Dual{Nothing, Float32, 7}}}}, Vector{Float32}}, SimpleSolvers.LinearSolver{Float32, SimpleSolvers.LapackLU, SimpleSolvers.PivotedLUCache{Float32, Matrix{Float32}}}, SimpleSolvers.Linesearch{Float32, SimpleSolvers.Backtracking{Float32}, SimpleSolvers.LinesearchProblem{Float32, SimpleSolvers.var"#f#linesearch_problem##0"{Float32, SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}, Vector{Float32}, Vector{Float32}}, SimpleSolvers.var"#d#linesearch_problem##1"{SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.JacobianAutodiff{Float32, typeof(GeometricIntegratorsBase.residual!), ForwardDiff.JacobianConfig{Nothing, Float32, 7, Tuple{Vector{ForwardDiff.Dual{Nothing, Float32, 7}}, Vector{ForwardDiff.Dual{Nothing, Float32, 7}}}}, Vector{Float32}}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}, Matrix{Float32}, Vector{Float32}, Vector{Float32}}}, SimpleSolvers.Options{Float32}}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}}, NoInitialGuess, SimpleSolvers.NonlinearSolverState{Float32, Vector{Float32}, Vector{Float32}}}}, iteration::Int64; stalled::Bool) @ SimpleSolvers ~/.julia/packages/SimpleSolvers/RSxww/src/nonlinear/newton_solver.jl:225 [3] direction!(s::SimpleSolvers.NewtonSolver{Float32, SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.LinearProblem{Float32, Vector{Float32}, Matrix{Float32}}, SimpleSolvers.JacobianAutodiff{Float32, typeof(GeometricIntegratorsBase.residual!), ForwardDiff.JacobianConfig{Nothing, Float32, 7, Tuple{Vector{ForwardDiff.Dual{Nothing, Float32, 7}}, Vector{ForwardDiff.Dual{Nothing, Float32, 7}}}}, Vector{Float32}}, SimpleSolvers.LinearSolver{Float32, SimpleSolvers.LapackLU, SimpleSolvers.PivotedLUCache{Float32, Matrix{Float32}}}, SimpleSolvers.Linesearch{Float32, SimpleSolvers.Backtracking{Float32}, SimpleSolvers.LinesearchProblem{Float32, SimpleSolvers.var"#f#linesearch_problem##0"{Float32, SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}, Vector{Float32}, Vector{Float32}}, SimpleSolvers.var"#d#linesearch_problem##1"{SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.JacobianAutodiff{Float32, typeof(GeometricIntegratorsBase.residual!), ForwardDiff.JacobianConfig{Nothing, Float32, 7, Tuple{Vector{ForwardDiff.Dual{Nothing, Float32, 7}}, Vector{ForwardDiff.Dual{Nothing, Float32, 7}}}}, Vector{Float32}}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}, Matrix{Float32}, Vector{Float32}, Vector{Float32}}}, SimpleSolvers.Options{Float32}}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}}, x::Vector{Float32}, params::Tuple{State{GeometricBase.TimeVariable{Float32, Array{Float32, 0}}, @NamedTuple{q::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}, q̇::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}, ṗ::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{q::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{q::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}, p::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}}, (Val{:q}(), Val{:p}(), Val{:v}(), Val{:q̇}(), Val{:ṗ}()), (Val{:q}(), Val{:p}(), Val{:v}()), (Val{:q}(), Val{:p}())}, @NamedTuple{m::Float32, k::Float32, ω::Float32}, GeometricIntegrator{ShallowNet{Float32, 8, ShallowNetBasis{Float32, var"#relu_k##0#relu_k##1"{Int64}, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, KernelAbstractions.CPU, SymbolicNeuralNetworks.SymbolicNeuralNetwork{AbstractNeuralNetworks.UnknownArchitecture, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, NetworkParameters{Symbolics.Num, (:L1, :L2), Tuple{@NamedTuple{W::Matrix{Symbolics.Num}, b::Vector{Symbolics.Num}}, @NamedTuple{W::Matrix{Symbolics.Num}}}}, Vector{Symbolics.Num}}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xe06bbf4f, 0x4ad81da3, 0x67c1d00a, 0xcbec4786, 0x3bd65808), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xcad91503, 0x9654d830, 0xdbbeeefd, 0x180bac7e, 0x00470590), Expr}, 2}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xc7e150de, 0xda419d55, 0x588a2fb0, 0x07f1ba50, 0xaf86e00f), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}}, IntegratorExtrapolation, OGA{BiasGrid1d, OrthogonalProjection{Nothing}, IncrementalQR}}, GeometricEquations.LODEProblem{Float32, Float32, GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, GeometricEquations.LODE{typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), typeof(GeometricProblems.HarmonicOscillator.ω!), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(lagrangian), @NamedTuple{h::typeof(hamiltonian)}, @NamedTuple{m::DataType, k::DataType, ω::DataType}, GeometricBase.NullPeriodicity}, @NamedTuple{ϑ::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), g::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), ω::typeof(GeometricProblems.HarmonicOscillator.ω!), l::typeof(lagrangian)}, @NamedTuple{}, @NamedTuple{v::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f)}, @NamedTuple{q::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{m::Float32, k::Float32, ω::Float32}}, CacheDict{GeometricEquations.LODEProblem{Float32, Float32, GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, GeometricEquations.LODE{typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), typeof(GeometricProblems.HarmonicOscillator.ω!), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(lagrangian), @NamedTuple{h::typeof(hamiltonian)}, @NamedTuple{m::DataType, k::DataType, ω::DataType}, GeometricBase.NullPeriodicity}, @NamedTuple{ϑ::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), g::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), ω::typeof(GeometricProblems.HarmonicOscillator.ω!), l::typeof(lagrangian)}, @NamedTuple{}, @NamedTuple{v::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f)}, @NamedTuple{q::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{m::Float32, k::Float32, ω::Float32}}, ShallowNet{Float32, 8, ShallowNetBasis{Float32, var"#relu_k##0#relu_k##1"{Int64}, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, 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0x07f1ba50, 0xaf86e00f), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}}, IntegratorExtrapolation, OGA{BiasGrid1d, OrthogonalProjection{Nothing}, IncrementalQR}}}, SimpleSolvers.NewtonSolver{Float32, SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.LinearProblem{Float32, Vector{Float32}, Matrix{Float32}}, SimpleSolvers.JacobianAutodiff{Float32, typeof(GeometricIntegratorsBase.residual!), ForwardDiff.JacobianConfig{Nothing, Float32, 7, Tuple{Vector{ForwardDiff.Dual{Nothing, Float32, 7}}, Vector{ForwardDiff.Dual{Nothing, Float32, 7}}}}, Vector{Float32}}, SimpleSolvers.LinearSolver{Float32, SimpleSolvers.LapackLU, SimpleSolvers.PivotedLUCache{Float32, Matrix{Float32}}}, SimpleSolvers.Linesearch{Float32, SimpleSolvers.Backtracking{Float32}, SimpleSolvers.LinesearchProblem{Float32, SimpleSolvers.var"#f#linesearch_problem##0"{Float32, SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}, Vector{Float32}, Vector{Float32}}, SimpleSolvers.var"#d#linesearch_problem##1"{SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.JacobianAutodiff{Float32, typeof(GeometricIntegratorsBase.residual!), ForwardDiff.JacobianConfig{Nothing, Float32, 7, Tuple{Vector{ForwardDiff.Dual{Nothing, Float32, 7}}, Vector{ForwardDiff.Dual{Nothing, Float32, 7}}}}, Vector{Float32}}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}, Matrix{Float32}, Vector{Float32}, Vector{Float32}}}, SimpleSolvers.Options{Float32}}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}}, NoInitialGuess, SimpleSolvers.NonlinearSolverState{Float32, Vector{Float32}, Vector{Float32}}}}, iteration::Int64; stalled::Bool) @ SimpleSolvers ~/.julia/packages/SimpleSolvers/RSxww/src/nonlinear/newton_solver.jl:229 [inlined] [4] solver_step!(x::Vector{Float32}, s::SimpleSolvers.NewtonSolver{Float32, SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.LinearProblem{Float32, Vector{Float32}, Matrix{Float32}}, SimpleSolvers.JacobianAutodiff{Float32, typeof(GeometricIntegratorsBase.residual!), ForwardDiff.JacobianConfig{Nothing, Float32, 7, Tuple{Vector{ForwardDiff.Dual{Nothing, Float32, 7}}, Vector{ForwardDiff.Dual{Nothing, Float32, 7}}}}, Vector{Float32}}, SimpleSolvers.LinearSolver{Float32, SimpleSolvers.LapackLU, SimpleSolvers.PivotedLUCache{Float32, Matrix{Float32}}}, SimpleSolvers.Linesearch{Float32, SimpleSolvers.Backtracking{Float32}, SimpleSolvers.LinesearchProblem{Float32, SimpleSolvers.var"#f#linesearch_problem##0"{Float32, SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}, Vector{Float32}, Vector{Float32}}, SimpleSolvers.var"#d#linesearch_problem##1"{SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.JacobianAutodiff{Float32, typeof(GeometricIntegratorsBase.residual!), ForwardDiff.JacobianConfig{Nothing, Float32, 7, Tuple{Vector{ForwardDiff.Dual{Nothing, Float32, 7}}, Vector{ForwardDiff.Dual{Nothing, Float32, 7}}}}, Vector{Float32}}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}, Matrix{Float32}, Vector{Float32}, Vector{Float32}}}, SimpleSolvers.Options{Float32}}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}}, state::SimpleSolvers.NonlinearSolverState{Float32, Vector{Float32}, Vector{Float32}}, params::Tuple{State{GeometricBase.TimeVariable{Float32, Array{Float32, 0}}, @NamedTuple{q::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}, q̇::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}, ṗ::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{q::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{q::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}, p::GeometricBase.VectorfieldVariable{Float32, 1, 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var"#relu_k##0#relu_k##1"{Int64}, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, KernelAbstractions.CPU, SymbolicNeuralNetworks.SymbolicNeuralNetwork{AbstractNeuralNetworks.UnknownArchitecture, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, NetworkParameters{Symbolics.Num, (:L1, :L2), Tuple{@NamedTuple{W::Matrix{Symbolics.Num}, b::Vector{Symbolics.Num}}, @NamedTuple{W::Matrix{Symbolics.Num}}}}, Vector{Symbolics.Num}}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xe06bbf4f, 0x4ad81da3, 0x67c1d00a, 0xcbec4786, 0x3bd65808), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xcad91503, 0x9654d830, 0xdbbeeefd, 0x180bac7e, 0x00470590), Expr}, 2}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xc7e150de, 0xda419d55, 0x588a2fb0, 0x07f1ba50, 0xaf86e00f), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}}, IntegratorExtrapolation, OGA{BiasGrid1d, OrthogonalProjection{Nothing}, IncrementalQR}}}, SimpleSolvers.NewtonSolver{Float32, SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.LinearProblem{Float32, Vector{Float32}, Matrix{Float32}}, SimpleSolvers.JacobianAutodiff{Float32, typeof(GeometricIntegratorsBase.residual!), ForwardDiff.JacobianConfig{Nothing, Float32, 7, Tuple{Vector{ForwardDiff.Dual{Nothing, Float32, 7}}, Vector{ForwardDiff.Dual{Nothing, Float32, 7}}}}, Vector{Float32}}, SimpleSolvers.LinearSolver{Float32, SimpleSolvers.LapackLU, SimpleSolvers.PivotedLUCache{Float32, Matrix{Float32}}}, SimpleSolvers.Linesearch{Float32, SimpleSolvers.Backtracking{Float32}, SimpleSolvers.LinesearchProblem{Float32, SimpleSolvers.var"#f#linesearch_problem##0"{Float32, SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}, Vector{Float32}, Vector{Float32}}, SimpleSolvers.var"#d#linesearch_problem##1"{SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.JacobianAutodiff{Float32, typeof(GeometricIntegratorsBase.residual!), ForwardDiff.JacobianConfig{Nothing, Float32, 7, Tuple{Vector{ForwardDiff.Dual{Nothing, Float32, 7}}, Vector{ForwardDiff.Dual{Nothing, Float32, 7}}}}, Vector{Float32}}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}, Matrix{Float32}, Vector{Float32}, Vector{Float32}}}, SimpleSolvers.Options{Float32}}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}}, NoInitialGuess, SimpleSolvers.NonlinearSolverState{Float32, Vector{Float32}, Vector{Float32}}}}) @ SimpleSolvers ~/.julia/packages/SimpleSolvers/RSxww/src/nonlinear/nonlinear_solver.jl:275 [5] _solve_core!(x::Vector{Float32}, s::SimpleSolvers.NewtonSolver{Float32, SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.LinearProblem{Float32, Vector{Float32}, Matrix{Float32}}, SimpleSolvers.JacobianAutodiff{Float32, typeof(GeometricIntegratorsBase.residual!), ForwardDiff.JacobianConfig{Nothing, Float32, 7, Tuple{Vector{ForwardDiff.Dual{Nothing, Float32, 7}}, Vector{ForwardDiff.Dual{Nothing, Float32, 7}}}}, Vector{Float32}}, SimpleSolvers.LinearSolver{Float32, SimpleSolvers.LapackLU, SimpleSolvers.PivotedLUCache{Float32, Matrix{Float32}}}, SimpleSolvers.Linesearch{Float32, SimpleSolvers.Backtracking{Float32}, SimpleSolvers.LinesearchProblem{Float32, SimpleSolvers.var"#f#linesearch_problem##0"{Float32, SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}, Vector{Float32}, Vector{Float32}}, SimpleSolvers.var"#d#linesearch_problem##1"{SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.JacobianAutodiff{Float32, typeof(GeometricIntegratorsBase.residual!), ForwardDiff.JacobianConfig{Nothing, Float32, 7, Tuple{Vector{ForwardDiff.Dual{Nothing, Float32, 7}}, Vector{ForwardDiff.Dual{Nothing, Float32, 7}}}}, Vector{Float32}}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}, Matrix{Float32}, Vector{Float32}, Vector{Float32}}}, SimpleSolvers.Options{Float32}}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}}, state::SimpleSolvers.NonlinearSolverState{Float32, Vector{Float32}, Vector{Float32}}, params::Tuple{State{GeometricBase.TimeVariable{Float32, Array{Float32, 0}}, @NamedTuple{q::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}, q̇::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}, ṗ::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{q::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{q::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}, p::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}}, (Val{:q}(), Val{:p}(), Val{:v}(), Val{:q̇}(), Val{:ṗ}()), (Val{:q}(), Val{:p}(), Val{:v}()), (Val{:q}(), Val{:p}())}, @NamedTuple{m::Float32, k::Float32, ω::Float32}, GeometricIntegrator{ShallowNet{Float32, 8, ShallowNetBasis{Float32, var"#relu_k##0#relu_k##1"{Int64}, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, KernelAbstractions.CPU, SymbolicNeuralNetworks.SymbolicNeuralNetwork{AbstractNeuralNetworks.UnknownArchitecture, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, NetworkParameters{Symbolics.Num, (:L1, :L2), Tuple{@NamedTuple{W::Matrix{Symbolics.Num}, b::Vector{Symbolics.Num}}, @NamedTuple{W::Matrix{Symbolics.Num}}}}, Vector{Symbolics.Num}}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xe06bbf4f, 0x4ad81da3, 0x67c1d00a, 0xcbec4786, 0x3bd65808), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xcad91503, 0x9654d830, 0xdbbeeefd, 0x180bac7e, 0x00470590), Expr}, 2}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xc7e150de, 0xda419d55, 0x588a2fb0, 0x07f1ba50, 0xaf86e00f), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}}, IntegratorExtrapolation, OGA{BiasGrid1d, OrthogonalProjection{Nothing}, IncrementalQR}}, GeometricEquations.LODEProblem{Float32, Float32, GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, GeometricEquations.LODE{typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), typeof(GeometricProblems.HarmonicOscillator.ω!), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(lagrangian), @NamedTuple{h::typeof(hamiltonian)}, @NamedTuple{m::DataType, k::DataType, ω::DataType}, GeometricBase.NullPeriodicity}, @NamedTuple{ϑ::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), g::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), ω::typeof(GeometricProblems.HarmonicOscillator.ω!), l::typeof(lagrangian)}, @NamedTuple{}, @NamedTuple{v::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f)}, @NamedTuple{q::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{m::Float32, k::Float32, ω::Float32}}, CacheDict{GeometricEquations.LODEProblem{Float32, Float32, GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, GeometricEquations.LODE{typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), typeof(GeometricProblems.HarmonicOscillator.ω!), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(lagrangian), @NamedTuple{h::typeof(hamiltonian)}, @NamedTuple{m::DataType, k::DataType, ω::DataType}, GeometricBase.NullPeriodicity}, @NamedTuple{ϑ::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), g::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), ω::typeof(GeometricProblems.HarmonicOscillator.ω!), l::typeof(lagrangian)}, @NamedTuple{}, @NamedTuple{v::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f)}, @NamedTuple{q::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{m::Float32, k::Float32, ω::Float32}}, ShallowNet{Float32, 8, ShallowNetBasis{Float32, var"#relu_k##0#relu_k##1"{Int64}, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, KernelAbstractions.CPU, SymbolicNeuralNetworks.SymbolicNeuralNetwork{AbstractNeuralNetworks.UnknownArchitecture, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, NetworkParameters{Symbolics.Num, (:L1, :L2), Tuple{@NamedTuple{W::Matrix{Symbolics.Num}, b::Vector{Symbolics.Num}}, @NamedTuple{W::Matrix{Symbolics.Num}}}}, Vector{Symbolics.Num}}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xe06bbf4f, 0x4ad81da3, 0x67c1d00a, 0xcbec4786, 0x3bd65808), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xcad91503, 0x9654d830, 0xdbbeeefd, 0x180bac7e, 0x00470590), Expr}, 2}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xc7e150de, 0xda419d55, 0x588a2fb0, 0x07f1ba50, 0xaf86e00f), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}}, IntegratorExtrapolation, OGA{BiasGrid1d, OrthogonalProjection{Nothing}, IncrementalQR}}}, SimpleSolvers.NewtonSolver{Float32, SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.LinearProblem{Float32, Vector{Float32}, Matrix{Float32}}, SimpleSolvers.JacobianAutodiff{Float32, typeof(GeometricIntegratorsBase.residual!), ForwardDiff.JacobianConfig{Nothing, Float32, 7, Tuple{Vector{ForwardDiff.Dual{Nothing, Float32, 7}}, Vector{ForwardDiff.Dual{Nothing, Float32, 7}}}}, Vector{Float32}}, SimpleSolvers.LinearSolver{Float32, SimpleSolvers.LapackLU, SimpleSolvers.PivotedLUCache{Float32, Matrix{Float32}}}, SimpleSolvers.Linesearch{Float32, SimpleSolvers.Backtracking{Float32}, SimpleSolvers.LinesearchProblem{Float32, SimpleSolvers.var"#f#linesearch_problem##0"{Float32, SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}, Vector{Float32}, Vector{Float32}}, SimpleSolvers.var"#d#linesearch_problem##1"{SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.JacobianAutodiff{Float32, typeof(GeometricIntegratorsBase.residual!), ForwardDiff.JacobianConfig{Nothing, Float32, 7, Tuple{Vector{ForwardDiff.Dual{Nothing, Float32, 7}}, Vector{ForwardDiff.Dual{Nothing, Float32, 7}}}}, Vector{Float32}}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}, Matrix{Float32}, Vector{Float32}, Vector{Float32}}}, SimpleSolvers.Options{Float32}}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}}, NoInitialGuess, SimpleSolvers.NonlinearSolverState{Float32, Vector{Float32}, Vector{Float32}}}}) @ SimpleSolvers ~/.julia/packages/SimpleSolvers/RSxww/src/nonlinear/nonlinear_solver.jl:347 [6] solve_with_status!(x::Vector{Float32}, s::SimpleSolvers.NewtonSolver{Float32, SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.LinearProblem{Float32, Vector{Float32}, Matrix{Float32}}, SimpleSolvers.JacobianAutodiff{Float32, typeof(GeometricIntegratorsBase.residual!), ForwardDiff.JacobianConfig{Nothing, Float32, 7, Tuple{Vector{ForwardDiff.Dual{Nothing, Float32, 7}}, Vector{ForwardDiff.Dual{Nothing, Float32, 7}}}}, Vector{Float32}}, SimpleSolvers.LinearSolver{Float32, SimpleSolvers.LapackLU, SimpleSolvers.PivotedLUCache{Float32, Matrix{Float32}}}, SimpleSolvers.Linesearch{Float32, SimpleSolvers.Backtracking{Float32}, SimpleSolvers.LinesearchProblem{Float32, SimpleSolvers.var"#f#linesearch_problem##0"{Float32, SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}, Vector{Float32}, Vector{Float32}}, SimpleSolvers.var"#d#linesearch_problem##1"{SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.JacobianAutodiff{Float32, typeof(GeometricIntegratorsBase.residual!), ForwardDiff.JacobianConfig{Nothing, Float32, 7, Tuple{Vector{ForwardDiff.Dual{Nothing, Float32, 7}}, Vector{ForwardDiff.Dual{Nothing, Float32, 7}}}}, Vector{Float32}}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}, Matrix{Float32}, Vector{Float32}, Vector{Float32}}}, SimpleSolvers.Options{Float32}}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}}, state::SimpleSolvers.NonlinearSolverState{Float32, Vector{Float32}, Vector{Float32}}, params::Tuple{State{GeometricBase.TimeVariable{Float32, Array{Float32, 0}}, @NamedTuple{q::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}, q̇::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}, ṗ::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{q::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{q::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}, p::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}}, (Val{:q}(), Val{:p}(), Val{:v}(), Val{:q̇}(), Val{:ṗ}()), (Val{:q}(), Val{:p}(), Val{:v}()), (Val{:q}(), Val{:p}())}, @NamedTuple{m::Float32, k::Float32, ω::Float32}, GeometricIntegrator{ShallowNet{Float32, 8, ShallowNetBasis{Float32, var"#relu_k##0#relu_k##1"{Int64}, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, KernelAbstractions.CPU, SymbolicNeuralNetworks.SymbolicNeuralNetwork{AbstractNeuralNetworks.UnknownArchitecture, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, NetworkParameters{Symbolics.Num, (:L1, :L2), Tuple{@NamedTuple{W::Matrix{Symbolics.Num}, b::Vector{Symbolics.Num}}, @NamedTuple{W::Matrix{Symbolics.Num}}}}, Vector{Symbolics.Num}}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xe06bbf4f, 0x4ad81da3, 0x67c1d00a, 0xcbec4786, 0x3bd65808), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xcad91503, 0x9654d830, 0xdbbeeefd, 0x180bac7e, 0x00470590), Expr}, 2}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xc7e150de, 0xda419d55, 0x588a2fb0, 0x07f1ba50, 0xaf86e00f), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}}, IntegratorExtrapolation, OGA{BiasGrid1d, OrthogonalProjection{Nothing}, IncrementalQR}}, GeometricEquations.LODEProblem{Float32, Float32, GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, GeometricEquations.LODE{typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), typeof(GeometricProblems.HarmonicOscillator.ω!), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(lagrangian), @NamedTuple{h::typeof(hamiltonian)}, @NamedTuple{m::DataType, k::DataType, ω::DataType}, GeometricBase.NullPeriodicity}, @NamedTuple{ϑ::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), g::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), ω::typeof(GeometricProblems.HarmonicOscillator.ω!), l::typeof(lagrangian)}, @NamedTuple{}, @NamedTuple{v::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f)}, @NamedTuple{q::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{m::Float32, k::Float32, ω::Float32}}, CacheDict{GeometricEquations.LODEProblem{Float32, Float32, GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, GeometricEquations.LODE{typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), typeof(GeometricProblems.HarmonicOscillator.ω!), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(lagrangian), @NamedTuple{h::typeof(hamiltonian)}, @NamedTuple{m::DataType, k::DataType, ω::DataType}, GeometricBase.NullPeriodicity}, @NamedTuple{ϑ::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), g::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), ω::typeof(GeometricProblems.HarmonicOscillator.ω!), l::typeof(lagrangian)}, @NamedTuple{}, @NamedTuple{v::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f)}, @NamedTuple{q::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{m::Float32, k::Float32, ω::Float32}}, ShallowNet{Float32, 8, ShallowNetBasis{Float32, var"#relu_k##0#relu_k##1"{Int64}, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, KernelAbstractions.CPU, SymbolicNeuralNetworks.SymbolicNeuralNetwork{AbstractNeuralNetworks.UnknownArchitecture, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, NetworkParameters{Symbolics.Num, (:L1, :L2), Tuple{@NamedTuple{W::Matrix{Symbolics.Num}, b::Vector{Symbolics.Num}}, @NamedTuple{W::Matrix{Symbolics.Num}}}}, Vector{Symbolics.Num}}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xe06bbf4f, 0x4ad81da3, 0x67c1d00a, 0xcbec4786, 0x3bd65808), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xcad91503, 0x9654d830, 0xdbbeeefd, 0x180bac7e, 0x00470590), Expr}, 2}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xc7e150de, 0xda419d55, 0x588a2fb0, 0x07f1ba50, 0xaf86e00f), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}}, IntegratorExtrapolation, OGA{BiasGrid1d, OrthogonalProjection{Nothing}, IncrementalQR}}}, SimpleSolvers.NewtonSolver{Float32, SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.LinearProblem{Float32, Vector{Float32}, Matrix{Float32}}, SimpleSolvers.JacobianAutodiff{Float32, typeof(GeometricIntegratorsBase.residual!), ForwardDiff.JacobianConfig{Nothing, Float32, 7, Tuple{Vector{ForwardDiff.Dual{Nothing, Float32, 7}}, Vector{ForwardDiff.Dual{Nothing, Float32, 7}}}}, Vector{Float32}}, SimpleSolvers.LinearSolver{Float32, SimpleSolvers.LapackLU, SimpleSolvers.PivotedLUCache{Float32, Matrix{Float32}}}, SimpleSolvers.Linesearch{Float32, SimpleSolvers.Backtracking{Float32}, SimpleSolvers.LinesearchProblem{Float32, SimpleSolvers.var"#f#linesearch_problem##0"{Float32, SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}, Vector{Float32}, Vector{Float32}}, SimpleSolvers.var"#d#linesearch_problem##1"{SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.JacobianAutodiff{Float32, typeof(GeometricIntegratorsBase.residual!), ForwardDiff.JacobianConfig{Nothing, Float32, 7, Tuple{Vector{ForwardDiff.Dual{Nothing, Float32, 7}}, Vector{ForwardDiff.Dual{Nothing, Float32, 7}}}}, Vector{Float32}}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}, Matrix{Float32}, Vector{Float32}, Vector{Float32}}}, SimpleSolvers.Options{Float32}}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}}, NoInitialGuess, SimpleSolvers.NonlinearSolverState{Float32, Vector{Float32}, Vector{Float32}}}}) @ SimpleSolvers ~/.julia/packages/SimpleSolvers/RSxww/src/nonlinear/nonlinear_solver.jl:563 [inlined] [7] integrate_step!(sol::State{GeometricBase.TimeVariable{Float32, Array{Float32, 0}}, @NamedTuple{q::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}, q̇::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}, ṗ::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{q::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{q::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}, p::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}}, (Val{:q}(), Val{:p}(), Val{:v}(), Val{:q̇}(), Val{:ṗ}()), (Val{:q}(), Val{:p}(), Val{:v}()), (Val{:q}(), Val{:p}())}, history::OffsetArrays.OffsetVector{State{GeometricBase.TimeVariable{Float32, Array{Float32, 0}}, @NamedTuple{q::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}, q̇::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}, ṗ::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{q::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{q::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}, p::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}}, (Val{:q}(), Val{:p}(), Val{:v}(), Val{:q̇}(), Val{:ṗ}()), (Val{:q}(), Val{:p}(), Val{:v}()), (Val{:q}(), Val{:p}())}, Vector{State{GeometricBase.TimeVariable{Float32, Array{Float32, 0}}, @NamedTuple{q::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}, q̇::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}, ṗ::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{q::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{q::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}, p::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}}, (Val{:q}(), Val{:p}(), Val{:v}(), Val{:q̇}(), Val{:ṗ}()), (Val{:q}(), Val{:p}(), Val{:v}()), (Val{:q}(), Val{:p}())}}}, params::@NamedTuple{m::Float32, k::Float32, ω::Float32}, int::GeometricIntegrator{ShallowNet{Float32, 8, ShallowNetBasis{Float32, var"#relu_k##0#relu_k##1"{Int64}, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, KernelAbstractions.CPU, SymbolicNeuralNetworks.SymbolicNeuralNetwork{AbstractNeuralNetworks.UnknownArchitecture, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, NetworkParameters{Symbolics.Num, (:L1, :L2), Tuple{@NamedTuple{W::Matrix{Symbolics.Num}, b::Vector{Symbolics.Num}}, @NamedTuple{W::Matrix{Symbolics.Num}}}}, Vector{Symbolics.Num}}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xe06bbf4f, 0x4ad81da3, 0x67c1d00a, 0xcbec4786, 0x3bd65808), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xcad91503, 0x9654d830, 0xdbbeeefd, 0x180bac7e, 0x00470590), Expr}, 2}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xc7e150de, 0xda419d55, 0x588a2fb0, 0x07f1ba50, 0xaf86e00f), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}}, IntegratorExtrapolation, OGA{BiasGrid1d, OrthogonalProjection{Nothing}, IncrementalQR}}, GeometricEquations.LODEProblem{Float32, Float32, GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, GeometricEquations.LODE{typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), typeof(GeometricProblems.HarmonicOscillator.ω!), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(lagrangian), @NamedTuple{h::typeof(hamiltonian)}, @NamedTuple{m::DataType, k::DataType, ω::DataType}, GeometricBase.NullPeriodicity}, @NamedTuple{ϑ::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), g::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), ω::typeof(GeometricProblems.HarmonicOscillator.ω!), l::typeof(lagrangian)}, @NamedTuple{}, @NamedTuple{v::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f)}, @NamedTuple{q::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{m::Float32, k::Float32, ω::Float32}}, CacheDict{GeometricEquations.LODEProblem{Float32, Float32, GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, GeometricEquations.LODE{typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), typeof(GeometricProblems.HarmonicOscillator.ω!), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(lagrangian), @NamedTuple{h::typeof(hamiltonian)}, @NamedTuple{m::DataType, k::DataType, ω::DataType}, GeometricBase.NullPeriodicity}, @NamedTuple{ϑ::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), g::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), ω::typeof(GeometricProblems.HarmonicOscillator.ω!), l::typeof(lagrangian)}, @NamedTuple{}, @NamedTuple{v::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f)}, @NamedTuple{q::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{m::Float32, k::Float32, ω::Float32}}, ShallowNet{Float32, 8, ShallowNetBasis{Float32, var"#relu_k##0#relu_k##1"{Int64}, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, KernelAbstractions.CPU, SymbolicNeuralNetworks.SymbolicNeuralNetwork{AbstractNeuralNetworks.UnknownArchitecture, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, NetworkParameters{Symbolics.Num, (:L1, :L2), Tuple{@NamedTuple{W::Matrix{Symbolics.Num}, b::Vector{Symbolics.Num}}, @NamedTuple{W::Matrix{Symbolics.Num}}}}, Vector{Symbolics.Num}}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xe06bbf4f, 0x4ad81da3, 0x67c1d00a, 0xcbec4786, 0x3bd65808), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xcad91503, 0x9654d830, 0xdbbeeefd, 0x180bac7e, 0x00470590), Expr}, 2}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xc7e150de, 0xda419d55, 0x588a2fb0, 0x07f1ba50, 0xaf86e00f), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}}, IntegratorExtrapolation, OGA{BiasGrid1d, OrthogonalProjection{Nothing}, IncrementalQR}}}, SimpleSolvers.NewtonSolver{Float32, SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.LinearProblem{Float32, Vector{Float32}, Matrix{Float32}}, SimpleSolvers.JacobianAutodiff{Float32, typeof(GeometricIntegratorsBase.residual!), ForwardDiff.JacobianConfig{Nothing, Float32, 7, Tuple{Vector{ForwardDiff.Dual{Nothing, Float32, 7}}, Vector{ForwardDiff.Dual{Nothing, Float32, 7}}}}, Vector{Float32}}, SimpleSolvers.LinearSolver{Float32, SimpleSolvers.LapackLU, SimpleSolvers.PivotedLUCache{Float32, Matrix{Float32}}}, SimpleSolvers.Linesearch{Float32, SimpleSolvers.Backtracking{Float32}, SimpleSolvers.LinesearchProblem{Float32, SimpleSolvers.var"#f#linesearch_problem##0"{Float32, SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}, Vector{Float32}, Vector{Float32}}, SimpleSolvers.var"#d#linesearch_problem##1"{SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.JacobianAutodiff{Float32, typeof(GeometricIntegratorsBase.residual!), ForwardDiff.JacobianConfig{Nothing, Float32, 7, Tuple{Vector{ForwardDiff.Dual{Nothing, Float32, 7}}, Vector{ForwardDiff.Dual{Nothing, Float32, 7}}}}, Vector{Float32}}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}, Matrix{Float32}, Vector{Float32}, Vector{Float32}}}, SimpleSolvers.Options{Float32}}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}}, NoInitialGuess, SimpleSolvers.NonlinearSolverState{Float32, Vector{Float32}, Vector{Float32}}}) @ NonlinearIntegrators ~/.julia/packages/NonlinearIntegrators/QdSjs/src/nvi/network_integrator_core.jl:455 [8] integrate!(solstep::SolutionStep{GeometricEquations.LODE, 2, OffsetArrays.OffsetVector{State{GeometricBase.TimeVariable{Float32, Array{Float32, 0}}, @NamedTuple{q::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}, q̇::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}, ṗ::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{q::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{q::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}, p::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}}, (Val{:q}(), Val{:p}(), Val{:v}(), Val{:q̇}(), Val{:ṗ}()), (Val{:q}(), Val{:p}(), Val{:v}()), (Val{:q}(), Val{:p}())}, Vector{State{GeometricBase.TimeVariable{Float32, Array{Float32, 0}}, @NamedTuple{q::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}, q̇::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}, ṗ::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{q::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{q::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}, p::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}}, (Val{:q}(), Val{:p}(), Val{:v}(), Val{:q̇}(), Val{:ṗ}()), (Val{:q}(), Val{:p}(), Val{:v}()), (Val{:q}(), Val{:p}())}}}, OffsetArrays.OffsetVector{@NamedTuple{q::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, Vector{@NamedTuple{q::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}}}, OffsetArrays.OffsetVector{@NamedTuple{q::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}, p::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}}, Vector{@NamedTuple{q::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}, p::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}}}}, @NamedTuple{}, @NamedTuple{m::Float32, k::Float32, ω::Float32}, State{GeometricBase.TimeVariable{Float32, Array{Float32, 0}}, @NamedTuple{q::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}, q̇::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}, ṗ::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{q::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{q::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}, p::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}}, (Val{:q}(), Val{:p}(), Val{:v}(), Val{:q̇}(), Val{:ṗ}()), (Val{:q}(), Val{:p}(), Val{:v}()), (Val{:q}(), Val{:p}())}, State{GeometricBase.TimeVariable{Float32, Array{Float32, 0}}, @NamedTuple{q̄::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p̄::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v̄::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}, q̇̄::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}, ṗ̄::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{q̄::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p̄::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v̄::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{q̄::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}, p̄::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}}, (Val{:q̄}(), Val{:p̄}(), Val{:v̄}(), Val{:q̇̄}(), Val{:ṗ̄}()), (Val{:q̄}(), Val{:p̄}(), Val{:v̄}()), (Val{:q̄}(), Val{:p̄}())}}, int::GeometricIntegrator{ShallowNet{Float32, 8, ShallowNetBasis{Float32, var"#relu_k##0#relu_k##1"{Int64}, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, KernelAbstractions.CPU, SymbolicNeuralNetworks.SymbolicNeuralNetwork{AbstractNeuralNetworks.UnknownArchitecture, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, NetworkParameters{Symbolics.Num, (:L1, :L2), Tuple{@NamedTuple{W::Matrix{Symbolics.Num}, b::Vector{Symbolics.Num}}, @NamedTuple{W::Matrix{Symbolics.Num}}}}, Vector{Symbolics.Num}}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xe06bbf4f, 0x4ad81da3, 0x67c1d00a, 0xcbec4786, 0x3bd65808), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xcad91503, 0x9654d830, 0xdbbeeefd, 0x180bac7e, 0x00470590), Expr}, 2}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xc7e150de, 0xda419d55, 0x588a2fb0, 0x07f1ba50, 0xaf86e00f), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}}, IntegratorExtrapolation, OGA{BiasGrid1d, OrthogonalProjection{Nothing}, IncrementalQR}}, GeometricEquations.LODEProblem{Float32, Float32, GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, GeometricEquations.LODE{typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), typeof(GeometricProblems.HarmonicOscillator.ω!), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(lagrangian), @NamedTuple{h::typeof(hamiltonian)}, @NamedTuple{m::DataType, k::DataType, ω::DataType}, GeometricBase.NullPeriodicity}, @NamedTuple{ϑ::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), g::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), ω::typeof(GeometricProblems.HarmonicOscillator.ω!), l::typeof(lagrangian)}, @NamedTuple{}, @NamedTuple{v::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f)}, @NamedTuple{q::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{m::Float32, k::Float32, ω::Float32}}, CacheDict{GeometricEquations.LODEProblem{Float32, Float32, GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, GeometricEquations.LODE{typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), typeof(GeometricProblems.HarmonicOscillator.ω!), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(lagrangian), @NamedTuple{h::typeof(hamiltonian)}, @NamedTuple{m::DataType, k::DataType, ω::DataType}, GeometricBase.NullPeriodicity}, @NamedTuple{ϑ::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), g::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), ω::typeof(GeometricProblems.HarmonicOscillator.ω!), l::typeof(lagrangian)}, @NamedTuple{}, @NamedTuple{v::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f)}, @NamedTuple{q::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{m::Float32, k::Float32, ω::Float32}}, ShallowNet{Float32, 8, ShallowNetBasis{Float32, var"#relu_k##0#relu_k##1"{Int64}, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, KernelAbstractions.CPU, SymbolicNeuralNetworks.SymbolicNeuralNetwork{AbstractNeuralNetworks.UnknownArchitecture, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, NetworkParameters{Symbolics.Num, (:L1, :L2), Tuple{@NamedTuple{W::Matrix{Symbolics.Num}, b::Vector{Symbolics.Num}}, @NamedTuple{W::Matrix{Symbolics.Num}}}}, Vector{Symbolics.Num}}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xe06bbf4f, 0x4ad81da3, 0x67c1d00a, 0xcbec4786, 0x3bd65808), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xcad91503, 0x9654d830, 0xdbbeeefd, 0x180bac7e, 0x00470590), Expr}, 2}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xc7e150de, 0xda419d55, 0x588a2fb0, 0x07f1ba50, 0xaf86e00f), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}}, IntegratorExtrapolation, OGA{BiasGrid1d, OrthogonalProjection{Nothing}, IncrementalQR}}}, SimpleSolvers.NewtonSolver{Float32, SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.LinearProblem{Float32, Vector{Float32}, Matrix{Float32}}, SimpleSolvers.JacobianAutodiff{Float32, typeof(GeometricIntegratorsBase.residual!), ForwardDiff.JacobianConfig{Nothing, Float32, 7, Tuple{Vector{ForwardDiff.Dual{Nothing, Float32, 7}}, Vector{ForwardDiff.Dual{Nothing, Float32, 7}}}}, Vector{Float32}}, SimpleSolvers.LinearSolver{Float32, SimpleSolvers.LapackLU, SimpleSolvers.PivotedLUCache{Float32, Matrix{Float32}}}, SimpleSolvers.Linesearch{Float32, SimpleSolvers.Backtracking{Float32}, SimpleSolvers.LinesearchProblem{Float32, SimpleSolvers.var"#f#linesearch_problem##0"{Float32, SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}, Vector{Float32}, Vector{Float32}}, SimpleSolvers.var"#d#linesearch_problem##1"{SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.JacobianAutodiff{Float32, typeof(GeometricIntegratorsBase.residual!), ForwardDiff.JacobianConfig{Nothing, Float32, 7, Tuple{Vector{ForwardDiff.Dual{Nothing, Float32, 7}}, Vector{ForwardDiff.Dual{Nothing, Float32, 7}}}}, Vector{Float32}}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}, Matrix{Float32}, Vector{Float32}, Vector{Float32}}}, SimpleSolvers.Options{Float32}}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}}, NoInitialGuess, SimpleSolvers.NonlinearSolverState{Float32, Vector{Float32}, Vector{Float32}}}) @ GeometricIntegratorsBase ~/.julia/packages/GeometricIntegratorsBase/06T0Z/src/integrate.jl:14 [9] integrate!(sol::GeometricSolutions.GeometricSolution{Float32, Float32, GeometricSolutions.TimeSeries{Float32, 2, OffsetArrays.OffsetVector{Float32, StepRangeLen{Float32, Float64, Float64, Int64}}}, @NamedTuple{t::GeometricSolutions.ScalarDataSeries{Float32}, q::GeometricSolutions.DataSeries{Float32, Vector{Float32}}, p::GeometricSolutions.DataSeries{Float32, Vector{Float32}}, v::GeometricSolutions.DataSeries{Float32, Vector{Float32}}, q̇::GeometricSolutions.DataSeries{Float32, Vector{Float32}}, ṗ::GeometricSolutions.DataSeries{Float32, Vector{Float32}}}, OffsetArrays.OffsetVector{State{GeometricBase.TimeVariable{Float32, Array{Float32, 0}}, @NamedTuple{q::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}, q̇::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}, ṗ::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{q::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{q::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}, p::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}}, (Val{:q}(), Val{:p}(), Val{:v}(), Val{:q̇}(), Val{:ṗ}()), (Val{:q}(), Val{:p}(), Val{:v}()), (Val{:q}(), Val{:p}())}, Vector{State{GeometricBase.TimeVariable{Float32, Array{Float32, 0}}, @NamedTuple{q::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}, q̇::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}, ṗ::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{q::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{q::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}, p::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}}, (Val{:q}(), Val{:p}(), Val{:v}(), Val{:q̇}(), Val{:ṗ}()), (Val{:q}(), Val{:p}(), Val{:v}()), (Val{:q}(), Val{:p}())}}}, GeometricEquations.LODEProblem{Float32, Float32, GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, GeometricEquations.LODE{typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), typeof(GeometricProblems.HarmonicOscillator.ω!), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(lagrangian), @NamedTuple{h::typeof(hamiltonian)}, @NamedTuple{m::DataType, k::DataType, ω::DataType}, GeometricBase.NullPeriodicity}, @NamedTuple{ϑ::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), g::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), ω::typeof(GeometricProblems.HarmonicOscillator.ω!), l::typeof(lagrangian)}, @NamedTuple{}, @NamedTuple{v::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f)}, @NamedTuple{q::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{m::Float32, k::Float32, ω::Float32}}, @NamedTuple{t::GeometricBase.NullPeriodicity, q::GeometricBase.NullPeriodicity, p::GeometricBase.NullPeriodicity, v::GeometricBase.NullPeriodicity, q̇::GeometricBase.NullPeriodicity, ṗ::GeometricBase.NullPeriodicity}}, int::GeometricIntegrator{ShallowNet{Float32, 8, ShallowNetBasis{Float32, var"#relu_k##0#relu_k##1"{Int64}, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, KernelAbstractions.CPU, SymbolicNeuralNetworks.SymbolicNeuralNetwork{AbstractNeuralNetworks.UnknownArchitecture, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, NetworkParameters{Symbolics.Num, (:L1, :L2), Tuple{@NamedTuple{W::Matrix{Symbolics.Num}, b::Vector{Symbolics.Num}}, @NamedTuple{W::Matrix{Symbolics.Num}}}}, Vector{Symbolics.Num}}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xe06bbf4f, 0x4ad81da3, 0x67c1d00a, 0xcbec4786, 0x3bd65808), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xcad91503, 0x9654d830, 0xdbbeeefd, 0x180bac7e, 0x00470590), Expr}, 2}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xc7e150de, 0xda419d55, 0x588a2fb0, 0x07f1ba50, 0xaf86e00f), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}}, IntegratorExtrapolation, OGA{BiasGrid1d, OrthogonalProjection{Nothing}, IncrementalQR}}, GeometricEquations.LODEProblem{Float32, Float32, GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, GeometricEquations.LODE{typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), typeof(GeometricProblems.HarmonicOscillator.ω!), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(lagrangian), @NamedTuple{h::typeof(hamiltonian)}, @NamedTuple{m::DataType, k::DataType, ω::DataType}, GeometricBase.NullPeriodicity}, @NamedTuple{ϑ::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), g::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), ω::typeof(GeometricProblems.HarmonicOscillator.ω!), l::typeof(lagrangian)}, @NamedTuple{}, @NamedTuple{v::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f)}, @NamedTuple{q::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{m::Float32, k::Float32, ω::Float32}}, CacheDict{GeometricEquations.LODEProblem{Float32, Float32, GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, GeometricEquations.LODE{typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), typeof(GeometricProblems.HarmonicOscillator.ω!), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(lagrangian), @NamedTuple{h::typeof(hamiltonian)}, @NamedTuple{m::DataType, k::DataType, ω::DataType}, GeometricBase.NullPeriodicity}, @NamedTuple{ϑ::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), g::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), ω::typeof(GeometricProblems.HarmonicOscillator.ω!), l::typeof(lagrangian)}, @NamedTuple{}, @NamedTuple{v::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f)}, @NamedTuple{q::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{m::Float32, k::Float32, ω::Float32}}, ShallowNet{Float32, 8, ShallowNetBasis{Float32, var"#relu_k##0#relu_k##1"{Int64}, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, KernelAbstractions.CPU, SymbolicNeuralNetworks.SymbolicNeuralNetwork{AbstractNeuralNetworks.UnknownArchitecture, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, NetworkParameters{Symbolics.Num, (:L1, :L2), Tuple{@NamedTuple{W::Matrix{Symbolics.Num}, b::Vector{Symbolics.Num}}, @NamedTuple{W::Matrix{Symbolics.Num}}}}, Vector{Symbolics.Num}}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xe06bbf4f, 0x4ad81da3, 0x67c1d00a, 0xcbec4786, 0x3bd65808), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xcad91503, 0x9654d830, 0xdbbeeefd, 0x180bac7e, 0x00470590), Expr}, 2}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xc7e150de, 0xda419d55, 0x588a2fb0, 0x07f1ba50, 0xaf86e00f), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}}, IntegratorExtrapolation, OGA{BiasGrid1d, OrthogonalProjection{Nothing}, IncrementalQR}}}, SimpleSolvers.NewtonSolver{Float32, SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.LinearProblem{Float32, Vector{Float32}, Matrix{Float32}}, SimpleSolvers.JacobianAutodiff{Float32, typeof(GeometricIntegratorsBase.residual!), ForwardDiff.JacobianConfig{Nothing, Float32, 7, Tuple{Vector{ForwardDiff.Dual{Nothing, Float32, 7}}, Vector{ForwardDiff.Dual{Nothing, Float32, 7}}}}, Vector{Float32}}, SimpleSolvers.LinearSolver{Float32, SimpleSolvers.LapackLU, SimpleSolvers.PivotedLUCache{Float32, Matrix{Float32}}}, SimpleSolvers.Linesearch{Float32, SimpleSolvers.Backtracking{Float32}, SimpleSolvers.LinesearchProblem{Float32, SimpleSolvers.var"#f#linesearch_problem##0"{Float32, SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}, Vector{Float32}, Vector{Float32}}, SimpleSolvers.var"#d#linesearch_problem##1"{SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.JacobianAutodiff{Float32, typeof(GeometricIntegratorsBase.residual!), ForwardDiff.JacobianConfig{Nothing, Float32, 7, Tuple{Vector{ForwardDiff.Dual{Nothing, Float32, 7}}, Vector{ForwardDiff.Dual{Nothing, Float32, 7}}}}, Vector{Float32}}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}, Matrix{Float32}, Vector{Float32}, Vector{Float32}}}, SimpleSolvers.Options{Float32}}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}}, NoInitialGuess, SimpleSolvers.NonlinearSolverState{Float32, Vector{Float32}, Vector{Float32}}}, n₁::Int64, n₂::Int64) @ NonlinearIntegrators ~/.julia/packages/NonlinearIntegrators/QdSjs/src/nvi/network_integrator_core.jl:475 [10] integrate!(sol::GeometricSolutions.GeometricSolution{Float32, Float32, GeometricSolutions.TimeSeries{Float32, 2, OffsetArrays.OffsetVector{Float32, StepRangeLen{Float32, Float64, Float64, Int64}}}, @NamedTuple{t::GeometricSolutions.ScalarDataSeries{Float32}, q::GeometricSolutions.DataSeries{Float32, Vector{Float32}}, p::GeometricSolutions.DataSeries{Float32, Vector{Float32}}, v::GeometricSolutions.DataSeries{Float32, Vector{Float32}}, q̇::GeometricSolutions.DataSeries{Float32, Vector{Float32}}, ṗ::GeometricSolutions.DataSeries{Float32, Vector{Float32}}}, OffsetArrays.OffsetVector{State{GeometricBase.TimeVariable{Float32, Array{Float32, 0}}, @NamedTuple{q::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}, q̇::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}, ṗ::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{q::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{q::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}, p::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}}, (Val{:q}(), Val{:p}(), Val{:v}(), Val{:q̇}(), Val{:ṗ}()), (Val{:q}(), Val{:p}(), Val{:v}()), (Val{:q}(), Val{:p}())}, Vector{State{GeometricBase.TimeVariable{Float32, Array{Float32, 0}}, @NamedTuple{q::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}, q̇::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}, ṗ::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{q::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{q::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}, p::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}}, (Val{:q}(), Val{:p}(), Val{:v}(), Val{:q̇}(), Val{:ṗ}()), (Val{:q}(), Val{:p}(), Val{:v}()), (Val{:q}(), Val{:p}())}}}, GeometricEquations.LODEProblem{Float32, Float32, GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, GeometricEquations.LODE{typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), typeof(GeometricProblems.HarmonicOscillator.ω!), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(lagrangian), @NamedTuple{h::typeof(hamiltonian)}, @NamedTuple{m::DataType, k::DataType, ω::DataType}, GeometricBase.NullPeriodicity}, @NamedTuple{ϑ::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), g::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), ω::typeof(GeometricProblems.HarmonicOscillator.ω!), l::typeof(lagrangian)}, @NamedTuple{}, @NamedTuple{v::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f)}, @NamedTuple{q::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{m::Float32, k::Float32, ω::Float32}}, @NamedTuple{t::GeometricBase.NullPeriodicity, q::GeometricBase.NullPeriodicity, p::GeometricBase.NullPeriodicity, v::GeometricBase.NullPeriodicity, q̇::GeometricBase.NullPeriodicity, ṗ::GeometricBase.NullPeriodicity}}, int::GeometricIntegrator{ShallowNet{Float32, 8, ShallowNetBasis{Float32, var"#relu_k##0#relu_k##1"{Int64}, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, KernelAbstractions.CPU, SymbolicNeuralNetworks.SymbolicNeuralNetwork{AbstractNeuralNetworks.UnknownArchitecture, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, NetworkParameters{Symbolics.Num, (:L1, :L2), Tuple{@NamedTuple{W::Matrix{Symbolics.Num}, b::Vector{Symbolics.Num}}, @NamedTuple{W::Matrix{Symbolics.Num}}}}, Vector{Symbolics.Num}}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xe06bbf4f, 0x4ad81da3, 0x67c1d00a, 0xcbec4786, 0x3bd65808), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xcad91503, 0x9654d830, 0xdbbeeefd, 0x180bac7e, 0x00470590), Expr}, 2}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xc7e150de, 0xda419d55, 0x588a2fb0, 0x07f1ba50, 0xaf86e00f), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}}, IntegratorExtrapolation, OGA{BiasGrid1d, OrthogonalProjection{Nothing}, IncrementalQR}}, GeometricEquations.LODEProblem{Float32, Float32, GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, GeometricEquations.LODE{typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), typeof(GeometricProblems.HarmonicOscillator.ω!), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(lagrangian), @NamedTuple{h::typeof(hamiltonian)}, @NamedTuple{m::DataType, k::DataType, ω::DataType}, GeometricBase.NullPeriodicity}, @NamedTuple{ϑ::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), g::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), ω::typeof(GeometricProblems.HarmonicOscillator.ω!), l::typeof(lagrangian)}, @NamedTuple{}, @NamedTuple{v::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f)}, @NamedTuple{q::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{m::Float32, k::Float32, ω::Float32}}, CacheDict{GeometricEquations.LODEProblem{Float32, Float32, GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, GeometricEquations.LODE{typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), typeof(GeometricProblems.HarmonicOscillator.ω!), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(lagrangian), @NamedTuple{h::typeof(hamiltonian)}, @NamedTuple{m::DataType, k::DataType, ω::DataType}, GeometricBase.NullPeriodicity}, @NamedTuple{ϑ::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), g::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), ω::typeof(GeometricProblems.HarmonicOscillator.ω!), l::typeof(lagrangian)}, @NamedTuple{}, @NamedTuple{v::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f)}, @NamedTuple{q::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{m::Float32, k::Float32, ω::Float32}}, ShallowNet{Float32, 8, ShallowNetBasis{Float32, var"#relu_k##0#relu_k##1"{Int64}, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, KernelAbstractions.CPU, SymbolicNeuralNetworks.SymbolicNeuralNetwork{AbstractNeuralNetworks.UnknownArchitecture, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, NetworkParameters{Symbolics.Num, (:L1, :L2), Tuple{@NamedTuple{W::Matrix{Symbolics.Num}, b::Vector{Symbolics.Num}}, @NamedTuple{W::Matrix{Symbolics.Num}}}}, Vector{Symbolics.Num}}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xe06bbf4f, 0x4ad81da3, 0x67c1d00a, 0xcbec4786, 0x3bd65808), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xcad91503, 0x9654d830, 0xdbbeeefd, 0x180bac7e, 0x00470590), Expr}, 2}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xc7e150de, 0xda419d55, 0x588a2fb0, 0x07f1ba50, 0xaf86e00f), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}}, IntegratorExtrapolation, OGA{BiasGrid1d, OrthogonalProjection{Nothing}, IncrementalQR}}}, SimpleSolvers.NewtonSolver{Float32, SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.LinearProblem{Float32, Vector{Float32}, Matrix{Float32}}, SimpleSolvers.JacobianAutodiff{Float32, typeof(GeometricIntegratorsBase.residual!), ForwardDiff.JacobianConfig{Nothing, Float32, 7, Tuple{Vector{ForwardDiff.Dual{Nothing, Float32, 7}}, Vector{ForwardDiff.Dual{Nothing, Float32, 7}}}}, Vector{Float32}}, SimpleSolvers.LinearSolver{Float32, SimpleSolvers.LapackLU, SimpleSolvers.PivotedLUCache{Float32, Matrix{Float32}}}, SimpleSolvers.Linesearch{Float32, SimpleSolvers.Backtracking{Float32}, SimpleSolvers.LinesearchProblem{Float32, SimpleSolvers.var"#f#linesearch_problem##0"{Float32, SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}, Vector{Float32}, Vector{Float32}}, SimpleSolvers.var"#d#linesearch_problem##1"{SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.JacobianAutodiff{Float32, typeof(GeometricIntegratorsBase.residual!), ForwardDiff.JacobianConfig{Nothing, Float32, 7, Tuple{Vector{ForwardDiff.Dual{Nothing, Float32, 7}}, Vector{ForwardDiff.Dual{Nothing, Float32, 7}}}}, Vector{Float32}}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}, Matrix{Float32}, Vector{Float32}, Vector{Float32}}}, SimpleSolvers.Options{Float32}}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}}, NoInitialGuess, SimpleSolvers.NonlinearSolverState{Float32, Vector{Float32}, Vector{Float32}}}; kwargs::@Kwargs{}) @ GeometricIntegratorsBase ~/.julia/packages/GeometricIntegratorsBase/06T0Z/src/integrate.jl:106 [inlined] [11] integrate!(sol::GeometricSolutions.GeometricSolution{Float32, Float32, GeometricSolutions.TimeSeries{Float32, 2, OffsetArrays.OffsetVector{Float32, StepRangeLen{Float32, Float64, Float64, Int64}}}, @NamedTuple{t::GeometricSolutions.ScalarDataSeries{Float32}, q::GeometricSolutions.DataSeries{Float32, Vector{Float32}}, p::GeometricSolutions.DataSeries{Float32, Vector{Float32}}, v::GeometricSolutions.DataSeries{Float32, Vector{Float32}}, q̇::GeometricSolutions.DataSeries{Float32, Vector{Float32}}, ṗ::GeometricSolutions.DataSeries{Float32, Vector{Float32}}}, OffsetArrays.OffsetVector{State{GeometricBase.TimeVariable{Float32, Array{Float32, 0}}, @NamedTuple{q::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}, q̇::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}, ṗ::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{q::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{q::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}, p::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}}, (Val{:q}(), Val{:p}(), Val{:v}(), Val{:q̇}(), Val{:ṗ}()), (Val{:q}(), Val{:p}(), Val{:v}()), (Val{:q}(), Val{:p}())}, Vector{State{GeometricBase.TimeVariable{Float32, Array{Float32, 0}}, @NamedTuple{q::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}, q̇::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}, ṗ::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{q::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariableWithError{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{q::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}, p::GeometricBase.VectorfieldVariable{Float32, 1, Vector{Float32}}}, (Val{:q}(), Val{:p}(), Val{:v}(), Val{:q̇}(), Val{:ṗ}()), (Val{:q}(), Val{:p}(), Val{:v}()), (Val{:q}(), Val{:p}())}}}, GeometricEquations.LODEProblem{Float32, Float32, GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, GeometricEquations.LODE{typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), typeof(GeometricProblems.HarmonicOscillator.ω!), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(lagrangian), @NamedTuple{h::typeof(hamiltonian)}, @NamedTuple{m::DataType, k::DataType, ω::DataType}, GeometricBase.NullPeriodicity}, @NamedTuple{ϑ::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), g::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), ω::typeof(GeometricProblems.HarmonicOscillator.ω!), l::typeof(lagrangian)}, @NamedTuple{}, @NamedTuple{v::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f)}, @NamedTuple{q::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, 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AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, NetworkParameters{Symbolics.Num, (:L1, :L2), Tuple{@NamedTuple{W::Matrix{Symbolics.Num}, b::Vector{Symbolics.Num}}, @NamedTuple{W::Matrix{Symbolics.Num}}}}, Vector{Symbolics.Num}}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xe06bbf4f, 0x4ad81da3, 0x67c1d00a, 0xcbec4786, 0x3bd65808), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xcad91503, 0x9654d830, 0xdbbeeefd, 0x180bac7e, 0x00470590), Expr}, 2}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xc7e150de, 0xda419d55, 0x588a2fb0, 0x07f1ba50, 0xaf86e00f), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}}, IntegratorExtrapolation, OGA{BiasGrid1d, OrthogonalProjection{Nothing}, IncrementalQR}}, GeometricEquations.LODEProblem{Float32, Float32, GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, GeometricEquations.LODE{typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), typeof(GeometricProblems.HarmonicOscillator.ω!), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(lagrangian), @NamedTuple{h::typeof(hamiltonian)}, @NamedTuple{m::DataType, k::DataType, ω::DataType}, GeometricBase.NullPeriodicity}, @NamedTuple{ϑ::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), g::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), ω::typeof(GeometricProblems.HarmonicOscillator.ω!), l::typeof(lagrangian)}, @NamedTuple{}, @NamedTuple{v::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f)}, @NamedTuple{q::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{m::Float32, k::Float32, ω::Float32}}, CacheDict{GeometricEquations.LODEProblem{Float32, Float32, GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, GeometricEquations.LODE{typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), typeof(GeometricProblems.HarmonicOscillator.ω!), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(lagrangian), @NamedTuple{h::typeof(hamiltonian)}, @NamedTuple{m::DataType, k::DataType, ω::DataType}, GeometricBase.NullPeriodicity}, @NamedTuple{ϑ::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), g::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), ω::typeof(GeometricProblems.HarmonicOscillator.ω!), l::typeof(lagrangian)}, @NamedTuple{}, @NamedTuple{v::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f)}, @NamedTuple{q::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, 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NetworkParameters{Symbolics.Num, (:L1, :L2), Tuple{@NamedTuple{W::Matrix{Symbolics.Num}, b::Vector{Symbolics.Num}}, @NamedTuple{W::Matrix{Symbolics.Num}}}}, Vector{Symbolics.Num}}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xe06bbf4f, 0x4ad81da3, 0x67c1d00a, 0xcbec4786, 0x3bd65808), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xcad91503, 0x9654d830, 0xdbbeeefd, 0x180bac7e, 0x00470590), Expr}, 2}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xc7e150de, 0xda419d55, 0x588a2fb0, 0x07f1ba50, 0xaf86e00f), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}}, IntegratorExtrapolation, OGA{BiasGrid1d, OrthogonalProjection{Nothing}, IncrementalQR}}}, SimpleSolvers.NewtonSolver{Float32, SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.LinearProblem{Float32, Vector{Float32}, Matrix{Float32}}, SimpleSolvers.JacobianAutodiff{Float32, typeof(GeometricIntegratorsBase.residual!), ForwardDiff.JacobianConfig{Nothing, Float32, 7, Tuple{Vector{ForwardDiff.Dual{Nothing, Float32, 7}}, Vector{ForwardDiff.Dual{Nothing, Float32, 7}}}}, Vector{Float32}}, SimpleSolvers.LinearSolver{Float32, SimpleSolvers.LapackLU, SimpleSolvers.PivotedLUCache{Float32, Matrix{Float32}}}, SimpleSolvers.Linesearch{Float32, SimpleSolvers.Backtracking{Float32}, SimpleSolvers.LinesearchProblem{Float32, SimpleSolvers.var"#f#linesearch_problem##0"{Float32, SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}, Vector{Float32}, Vector{Float32}}, SimpleSolvers.var"#d#linesearch_problem##1"{SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.JacobianAutodiff{Float32, typeof(GeometricIntegratorsBase.residual!), ForwardDiff.JacobianConfig{Nothing, Float32, 7, Tuple{Vector{ForwardDiff.Dual{Nothing, Float32, 7}}, Vector{ForwardDiff.Dual{Nothing, Float32, 7}}}}, Vector{Float32}}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}, Matrix{Float32}, Vector{Float32}, Vector{Float32}}}, SimpleSolvers.Options{Float32}}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}}, NoInitialGuess, SimpleSolvers.NonlinearSolverState{Float32, Vector{Float32}, Vector{Float32}}}) @ GeometricIntegratorsBase ~/.julia/packages/GeometricIntegratorsBase/06T0Z/src/integrate.jl:105 [12] integrate(integrator::GeometricIntegrator{ShallowNet{Float32, 8, ShallowNetBasis{Float32, var"#relu_k##0#relu_k##1"{Int64}, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, KernelAbstractions.CPU, SymbolicNeuralNetworks.SymbolicNeuralNetwork{AbstractNeuralNetworks.UnknownArchitecture, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, NetworkParameters{Symbolics.Num, (:L1, :L2), Tuple{@NamedTuple{W::Matrix{Symbolics.Num}, b::Vector{Symbolics.Num}}, @NamedTuple{W::Matrix{Symbolics.Num}}}}, Vector{Symbolics.Num}}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xe06bbf4f, 0x4ad81da3, 0x67c1d00a, 0xcbec4786, 0x3bd65808), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xcad91503, 0x9654d830, 0xdbbeeefd, 0x180bac7e, 0x00470590), Expr}, 2}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xc7e150de, 0xda419d55, 0x588a2fb0, 0x07f1ba50, 0xaf86e00f), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}}, IntegratorExtrapolation, OGA{BiasGrid1d, OrthogonalProjection{Nothing}, IncrementalQR}}, GeometricEquations.LODEProblem{Float32, Float32, GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, GeometricEquations.LODE{typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), typeof(GeometricProblems.HarmonicOscillator.ω!), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(lagrangian), @NamedTuple{h::typeof(hamiltonian)}, @NamedTuple{m::DataType, k::DataType, ω::DataType}, GeometricBase.NullPeriodicity}, @NamedTuple{ϑ::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), g::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), ω::typeof(GeometricProblems.HarmonicOscillator.ω!), l::typeof(lagrangian)}, @NamedTuple{}, @NamedTuple{v::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f)}, @NamedTuple{q::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{m::Float32, k::Float32, ω::Float32}}, CacheDict{GeometricEquations.LODEProblem{Float32, Float32, GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, GeometricEquations.LODE{typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), typeof(GeometricProblems.HarmonicOscillator.ω!), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(lagrangian), @NamedTuple{h::typeof(hamiltonian)}, @NamedTuple{m::DataType, k::DataType, ω::DataType}, GeometricBase.NullPeriodicity}, @NamedTuple{ϑ::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), g::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), ω::typeof(GeometricProblems.HarmonicOscillator.ω!), l::typeof(lagrangian)}, @NamedTuple{}, @NamedTuple{v::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f)}, @NamedTuple{q::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{m::Float32, k::Float32, ω::Float32}}, ShallowNet{Float32, 8, ShallowNetBasis{Float32, var"#relu_k##0#relu_k##1"{Int64}, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, KernelAbstractions.CPU, SymbolicNeuralNetworks.SymbolicNeuralNetwork{AbstractNeuralNetworks.UnknownArchitecture, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, NetworkParameters{Symbolics.Num, (:L1, :L2), Tuple{@NamedTuple{W::Matrix{Symbolics.Num}, b::Vector{Symbolics.Num}}, @NamedTuple{W::Matrix{Symbolics.Num}}}}, Vector{Symbolics.Num}}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xe06bbf4f, 0x4ad81da3, 0x67c1d00a, 0xcbec4786, 0x3bd65808), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xcad91503, 0x9654d830, 0xdbbeeefd, 0x180bac7e, 0x00470590), Expr}, 2}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xc7e150de, 0xda419d55, 0x588a2fb0, 0x07f1ba50, 0xaf86e00f), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}}, IntegratorExtrapolation, OGA{BiasGrid1d, OrthogonalProjection{Nothing}, IncrementalQR}}}, SimpleSolvers.NewtonSolver{Float32, SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.LinearProblem{Float32, Vector{Float32}, Matrix{Float32}}, SimpleSolvers.JacobianAutodiff{Float32, typeof(GeometricIntegratorsBase.residual!), ForwardDiff.JacobianConfig{Nothing, Float32, 7, Tuple{Vector{ForwardDiff.Dual{Nothing, Float32, 7}}, Vector{ForwardDiff.Dual{Nothing, Float32, 7}}}}, Vector{Float32}}, SimpleSolvers.LinearSolver{Float32, SimpleSolvers.LapackLU, SimpleSolvers.PivotedLUCache{Float32, Matrix{Float32}}}, SimpleSolvers.Linesearch{Float32, SimpleSolvers.Backtracking{Float32}, SimpleSolvers.LinesearchProblem{Float32, SimpleSolvers.var"#f#linesearch_problem##0"{Float32, SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}, Vector{Float32}, Vector{Float32}}, SimpleSolvers.var"#d#linesearch_problem##1"{SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.JacobianAutodiff{Float32, typeof(GeometricIntegratorsBase.residual!), ForwardDiff.JacobianConfig{Nothing, Float32, 7, Tuple{Vector{ForwardDiff.Dual{Nothing, Float32, 7}}, Vector{ForwardDiff.Dual{Nothing, Float32, 7}}}}, Vector{Float32}}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}, Matrix{Float32}, Vector{Float32}, Vector{Float32}}}, SimpleSolvers.Options{Float32}}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}}, NoInitialGuess, SimpleSolvers.NonlinearSolverState{Float32, Vector{Float32}, Vector{Float32}}}; kwargs::@Kwargs{}) @ GeometricIntegratorsBase ~/.julia/packages/GeometricIntegratorsBase/06T0Z/src/integrate.jl:114 [13] integrate(integrator::GeometricIntegrator{ShallowNet{Float32, 8, ShallowNetBasis{Float32, var"#relu_k##0#relu_k##1"{Int64}, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, KernelAbstractions.CPU, SymbolicNeuralNetworks.SymbolicNeuralNetwork{AbstractNeuralNetworks.UnknownArchitecture, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, NetworkParameters{Symbolics.Num, (:L1, :L2), Tuple{@NamedTuple{W::Matrix{Symbolics.Num}, b::Vector{Symbolics.Num}}, @NamedTuple{W::Matrix{Symbolics.Num}}}}, Vector{Symbolics.Num}}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xe06bbf4f, 0x4ad81da3, 0x67c1d00a, 0xcbec4786, 0x3bd65808), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xcad91503, 0x9654d830, 0xdbbeeefd, 0x180bac7e, 0x00470590), Expr}, 2}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xc7e150de, 0xda419d55, 0x588a2fb0, 0x07f1ba50, 0xaf86e00f), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}}, IntegratorExtrapolation, OGA{BiasGrid1d, OrthogonalProjection{Nothing}, IncrementalQR}}, GeometricEquations.LODEProblem{Float32, Float32, GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, GeometricEquations.LODE{typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), typeof(GeometricProblems.HarmonicOscillator.ω!), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(lagrangian), @NamedTuple{h::typeof(hamiltonian)}, @NamedTuple{m::DataType, k::DataType, ω::DataType}, GeometricBase.NullPeriodicity}, @NamedTuple{ϑ::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), g::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), ω::typeof(GeometricProblems.HarmonicOscillator.ω!), l::typeof(lagrangian)}, @NamedTuple{}, @NamedTuple{v::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f)}, @NamedTuple{q::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{m::Float32, k::Float32, ω::Float32}}, CacheDict{GeometricEquations.LODEProblem{Float32, Float32, GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, GeometricEquations.LODE{typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), typeof(GeometricProblems.HarmonicOscillator.ω!), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(lagrangian), @NamedTuple{h::typeof(hamiltonian)}, @NamedTuple{m::DataType, k::DataType, ω::DataType}, GeometricBase.NullPeriodicity}, @NamedTuple{ϑ::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), g::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), ω::typeof(GeometricProblems.HarmonicOscillator.ω!), l::typeof(lagrangian)}, @NamedTuple{}, @NamedTuple{v::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f)}, @NamedTuple{q::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{m::Float32, k::Float32, ω::Float32}}, ShallowNet{Float32, 8, ShallowNetBasis{Float32, var"#relu_k##0#relu_k##1"{Int64}, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, KernelAbstractions.CPU, SymbolicNeuralNetworks.SymbolicNeuralNetwork{AbstractNeuralNetworks.UnknownArchitecture, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, NetworkParameters{Symbolics.Num, (:L1, :L2), Tuple{@NamedTuple{W::Matrix{Symbolics.Num}, b::Vector{Symbolics.Num}}, @NamedTuple{W::Matrix{Symbolics.Num}}}}, Vector{Symbolics.Num}}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xe06bbf4f, 0x4ad81da3, 0x67c1d00a, 0xcbec4786, 0x3bd65808), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xcad91503, 0x9654d830, 0xdbbeeefd, 0x180bac7e, 0x00470590), Expr}, 2}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xc7e150de, 0xda419d55, 0x588a2fb0, 0x07f1ba50, 0xaf86e00f), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}}, IntegratorExtrapolation, OGA{BiasGrid1d, OrthogonalProjection{Nothing}, IncrementalQR}}}, SimpleSolvers.NewtonSolver{Float32, SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.LinearProblem{Float32, Vector{Float32}, Matrix{Float32}}, SimpleSolvers.JacobianAutodiff{Float32, typeof(GeometricIntegratorsBase.residual!), ForwardDiff.JacobianConfig{Nothing, Float32, 7, Tuple{Vector{ForwardDiff.Dual{Nothing, Float32, 7}}, Vector{ForwardDiff.Dual{Nothing, Float32, 7}}}}, Vector{Float32}}, SimpleSolvers.LinearSolver{Float32, SimpleSolvers.LapackLU, SimpleSolvers.PivotedLUCache{Float32, Matrix{Float32}}}, SimpleSolvers.Linesearch{Float32, SimpleSolvers.Backtracking{Float32}, SimpleSolvers.LinesearchProblem{Float32, SimpleSolvers.var"#f#linesearch_problem##0"{Float32, SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}, Vector{Float32}, Vector{Float32}}, SimpleSolvers.var"#d#linesearch_problem##1"{SimpleSolvers.NonlinearProblem{typeof(GeometricIntegratorsBase.residual!), Missing}, SimpleSolvers.JacobianAutodiff{Float32, typeof(GeometricIntegratorsBase.residual!), ForwardDiff.JacobianConfig{Nothing, Float32, 7, Tuple{Vector{ForwardDiff.Dual{Nothing, Float32, 7}}, Vector{ForwardDiff.Dual{Nothing, Float32, 7}}}}, Vector{Float32}}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}, Matrix{Float32}, Vector{Float32}, Vector{Float32}}}, SimpleSolvers.Options{Float32}}, SimpleSolvers.NonlinearSolverCache{Float32, Vector{Float32}, Matrix{Float32}}}, NoInitialGuess, SimpleSolvers.NonlinearSolverState{Float32, Vector{Float32}, Vector{Float32}}}) @ GeometricIntegratorsBase ~/.julia/packages/GeometricIntegratorsBase/06T0Z/src/integrate.jl:112 [14] integrate(problem::GeometricEquations.LODEProblem{Float32, Float32, GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, GeometricEquations.LODE{typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), typeof(GeometricProblems.HarmonicOscillator.ω!), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), typeof(lagrangian), @NamedTuple{h::typeof(hamiltonian)}, @NamedTuple{m::DataType, k::DataType, ω::DataType}, GeometricBase.NullPeriodicity}, @NamedTuple{ϑ::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_ϑ), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f), g::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_g), ω::typeof(GeometricProblems.HarmonicOscillator.ω!), l::typeof(lagrangian)}, @NamedTuple{}, @NamedTuple{v::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_v), f::typeof(GeometricProblems.HarmonicOscillator.oscillator_iode_f)}, @NamedTuple{q::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, p::GeometricBase.StateVariable{Float32, 1, Vector{Float32}, Tuple{Vector{Float32}, Vector{Float32}}, BitVector}, v::GeometricBase.AlgebraicVariable{Float32, 1, Vector{Float32}}}, @NamedTuple{m::Float32, k::Float32, ω::Float32}}, method::ShallowNet{Float32, 8, ShallowNetBasis{Float32, var"#relu_k##0#relu_k##1"{Int64}, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, KernelAbstractions.CPU, SymbolicNeuralNetworks.SymbolicNeuralNetwork{AbstractNeuralNetworks.UnknownArchitecture, AbstractNeuralNetworks.Chain{Tuple{AbstractNeuralNetworks.Dense{1, 4, true, AbstractNeuralNetworks.GenericActivation{var"#relu_k##0#relu_k##1"{Int64}}}, AbstractNeuralNetworks.Dense{4, 1, false, AbstractNeuralNetworks.GenericActivation{typeof(identity)}}}}, NetworkParameters{Symbolics.Num, (:L1, :L2), Tuple{@NamedTuple{W::Matrix{Symbolics.Num}, b::Vector{Symbolics.Num}}, @NamedTuple{W::Matrix{Symbolics.Num}}}}, Vector{Symbolics.Num}}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xe06bbf4f, 0x4ad81da3, 0x67c1d00a, 0xcbec4786, 0x3bd65808), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xcad91503, 0x9654d830, 0xdbbeeefd, 0x180bac7e, 0x00470590), Expr}, 2}, SymbolicNeuralNetworks.EquationSetFunction{1, SymbolicNeuralNetworks.InPlaceBatchedFunction{1, typeof(hcat), RuntimeGeneratedFunctions.RuntimeGeneratedFunction{(:out, :x1, :ps, :k), SymbolicNeuralNetworks.var"#_RGF_ModTag", SymbolicNeuralNetworks.var"#_RGF_ModTag", (0xc7e150de, 0xda419d55, 0x588a2fb0, 0x07f1ba50, 0xaf86e00f), Expr}, 1}, NeuralNetworkParameters.ParametersLayout{NeuralNetworkParameters.NestedLayout{(:L1, :L2), Tuple{NeuralNetworkParameters.NestedLayout{(:W, :b), Tuple{NeuralNetworkParameters.LeafLayout{2}, NeuralNetworkParameters.LeafLayout{1}}}, NeuralNetworkParameters.NestedLayout{(:W,), Tuple{NeuralNetworkParameters.LeafLayout{2}}}}}}}}, IntegratorExtrapolation, OGA{BiasGrid1d, OrthogonalProjection{Nothing}, IncrementalQR}}; kwargs::@Kwargs{regularization_factor::Float32, max_iterations::Int64}) @ GeometricIntegratorsBase ~/.julia/packages/GeometricIntegratorsBase/06T0Z/src/integrator.jl:89 [15] dispatch_case(name::String, make::var"#25#26", ::Core.TypeEgal{Float32}, extrap::IntegratorExtrapolation; kwargs::@Kwargs{initial_guess_method::OGA{BiasGrid1d, OrthogonalProjection{Nothing}, IncrementalQR}}) @ Main ~/.julia/packages/NonlinearIntegrators/QdSjs/test/testsetup.jl:274 [16] macro expansion @ ~/.julia/packages/NonlinearIntegrators/QdSjs/test/unit/network_integrators_unit.jl:33 [inlined] [17] macro expansion @ /opt/julia/share/julia/stdlib/v1.14/Test/src/Test.jl:2247 [inlined] [18] top-level scope @ ~/.julia/packages/NonlinearIntegrators/QdSjs/test/unit/network_integrators_unit.jl:33 ====================================================================================== Information request received. A stacktrace will print followed by a 1.0 second profile. --trace-compile is enabled during profile collection. ====================================================================================== cmd: /opt/julia/bin/julia 1247 running 1 of 1 signal (10): User defined signal 1 jl_lookup_generic_ at /source/src/gf.c:4738:5 ijl_apply_generic at /source/src/gf.c:4834:35 #argtypes_to_type##0 at ./../usr/share/julia/Compiler/src/typeutils.jl:40:0 (pc: 5) anymap at ./../usr/share/julia/Compiler/src/utilities.jl:29:0 [inlined] argtypes_to_type at ./../usr/share/julia/Compiler/src/typeutils.jl:40:0 (pc: 45) abstract_call_known at ./../usr/share/julia/Compiler/src/abstractinterpretation.jl:3081:0 (pc: 1829) abstract_call at ./../usr/share/julia/Compiler/src/abstractinterpretation.jl:3233:0 (pc: 345) abstract_call at ./../usr/share/julia/Compiler/src/abstractinterpretation.jl:3226:0 [inlined] abstract_call at ./../usr/share/julia/Compiler/src/abstractinterpretation.jl:3372:0 [inlined] abstract_eval_call at ./../usr/share/julia/Compiler/src/abstractinterpretation.jl:3390:0 (pc: 119) abstract_eval_statement_expr at ./../usr/share/julia/Compiler/src/abstractinterpretation.jl:3817:0 (pc: 4) abstract_eval_basic_statement at ./../usr/share/julia/Compiler/src/abstractinterpretation.jl:4284:0 [inlined] abstract_eval_basic_statement at ./../usr/share/julia/Compiler/src/abstractinterpretation.jl:4246:0 [inlined] typeinf_local at ./../usr/share/julia/Compiler/src/abstractinterpretation.jl:4827:0 (pc: 3370) jfptr_typeinf_local_1.1 at /opt/julia/lib/julia/sys.so (unknown line) _jl_invoke at /source/src/gf.c:4590:23 [inlined] ijl_apply_generic at /source/src/gf.c:4838:12 typeinf at ./../usr/share/julia/Compiler/src/abstractinterpretation.jl:5100:0 (pc: 690) typeinf_ext at ./../usr/share/julia/Compiler/src/typeinfer.jl:1795:0 (pc: 106) typeinf_ext_toplevel at ./../usr/share/julia/Compiler/src/typeinfer.jl:2074:0 [inlined] typeinf_ext_toplevel at ./../usr/share/julia/Compiler/src/typeinfer.jl:2083:0 (pc: 16) jfptr_typeinf_ext_toplevel_5.1 at /opt/julia/lib/julia/sys.so (unknown line) _jl_invoke at /source/src/gf.c:4590:23 [inlined] ijl_apply_generic at /source/src/gf.c:4838:12 jl_apply at /source/src/julia.h:2533:12 [inlined] jl_type_infer at /source/src/gf.c:482:35 jl_compile_method_very_internal at /source/src/gf.c:4082:20 _jl_invoke at /source/src/gf.c:4582:16 [inlined] ijl_apply_generic at /source/src/gf.c:4838:12 dispatch_case at /home/pkgeval/.julia/packages/NonlinearIntegrators/QdSjs/test/testsetup.jl:272:0 (pc: 2) unknown function (ip: 0x701ac14ea044) at (unknown file) _jl_invoke at /source/src/gf.c:4590:23 [inlined] ijl_apply_generic at /source/src/gf.c:4838:12 macro expansion at /home/pkgeval/.julia/packages/NonlinearIntegrators/QdSjs/test/unit/network_integrators_unit.jl:33:0 [inlined] macro expansion at /source/usr/share/julia/stdlib/v1.14/Test/src/Test.jl:2247:0 [inlined] top-level scope at /home/pkgeval/.julia/packages/NonlinearIntegrators/QdSjs/test/unit/network_integrators_unit.jl:33:0 (pc: 252) jl_invoke_oneshot at /source/src/gf.c:4631:23 ijl_eval_thunk at /source/src/toplevel.c:764:18 jl_toplevel_eval_flex at /source/src/toplevel.c:716:26 jl_eval_toplevel_stmts at /source/src/toplevel.c:601:15 jl_toplevel_eval_flex at /source/src/toplevel.c:688:27 ijl_toplevel_eval at /source/src/toplevel.c:786:12 ijl_toplevel_eval_in at /source/src/toplevel.c:831:13 eval at ./boot.jl:618:0 (pc: 1) include_string at ./loading.jl:3258:0 (pc: 140) _jl_invoke at /source/src/gf.c:4590:23 [inlined] ijl_apply_generic at /source/src/gf.c:4838:12 _include at ./loading.jl:3320:0 (pc: 123) include at ./Base.jl:335:0 (pc: 1) IncludeInto at ./Base.jl:336:0 (pc: 2) jfptr_IncludeInto_1.1 at /opt/julia/lib/julia/sys.so (unknown line) _jl_invoke at /source/src/gf.c:4590:23 [inlined] ijl_apply_generic at /source/src/gf.c:4838:12 jl_apply at /source/src/julia.h:2533:12 [inlined] do_call at /source/src/interpreter.c:123:26 eval_value at /source/src/interpreter.c:259:16 eval_stmt_value at /source/src/interpreter.c:194:23 [inlined] eval_body at /source/src/interpreter.c:829:21 eval_body at /source/src/interpreter.c:704:21 eval_body at /source/src/interpreter.c:712:21 eval_body at /source/src/interpreter.c:712:21 eval_body at /source/src/interpreter.c:712:21 eval_body at /source/src/interpreter.c:704:21 eval_body at /source/src/interpreter.c:712:21 eval_body at /source/src/interpreter.c:712:21 eval_body at /source/src/interpreter.c:712:21 jl_interpret_toplevel_thunk at /source/src/interpreter.c:1052:21 ijl_eval_thunk at /source/src/toplevel.c:772:18 jl_toplevel_eval_flex at /source/src/toplevel.c:716:26 jl_eval_toplevel_stmts at /source/src/toplevel.c:601:15 jl_toplevel_eval_flex at /source/src/toplevel.c:688:27 ijl_toplevel_eval at /source/src/toplevel.c:786:12 ijl_toplevel_eval_in at /source/src/toplevel.c:831:13 eval at ./boot.jl:618:0 (pc: 1) include_string at ./loading.jl:3258:0 (pc: 140) _jl_invoke at /source/src/gf.c:4590:23 [inlined] ijl_apply_generic at /source/src/gf.c:4838:12 _include at ./loading.jl:3320:0 (pc: 123) include at ./Base.jl:335:0 (pc: 1) IncludeInto at ./Base.jl:336:0 (pc: 2) jfptr_IncludeInto_1.1 at /opt/julia/lib/julia/sys.so (unknown line) _jl_invoke at /source/src/gf.c:4590:23 [inlined] ijl_apply_generic at /source/src/gf.c:4838:12 jl_apply at /source/src/julia.h:2533:12 [inlined] do_call at /source/src/interpreter.c:123:26 eval_value at /source/src/interpreter.c:259:16 eval_stmt_value at /source/src/interpreter.c:194:23 [inlined] eval_body at /source/src/interpreter.c:829:21 jl_interpret_toplevel_thunk at /source/src/interpreter.c:1052:21 ijl_eval_thunk at /source/src/toplevel.c:772:18 jl_toplevel_eval_flex at /source/src/toplevel.c:716:26 jl_eval_toplevel_stmts at /source/src/toplevel.c:601:15 jl_toplevel_eval_flex at /source/src/toplevel.c:688:27 ijl_toplevel_eval at /source/src/toplevel.c:786:12 ijl_toplevel_eval_in at /source/src/toplevel.c:831:13 eval at ./boot.jl:618:0 (pc: 1) __script_entry_eval at ./client.jl:106:0 [inlined] exec_options at ./client.jl:350:0 (pc: 426) _start at ./client.jl:695:0 (pc: 217) jfptr__start_0.1 at /opt/julia/lib/julia/sys.so (unknown line) _jl_invoke at /source/src/gf.c:4590:23 [inlined] ijl_apply_generic at /source/src/gf.c:4838:12 jl_apply at /source/src/julia.h:2533:12 [inlined] true_main at /source/src/jlapi.c:989:29 jl_repl_entrypoint at /source/src/jlapi.c:1156:15 main at /source/cli/loader_exe.c:117:15 unknown function (ip: 0x701b6a0c9249) at /lib/x86_64-linux-gnu/libc.so.6 __libc_start_main at /lib/x86_64-linux-gnu/libc.so.6 (unknown line) unknown function (ip: 0x4010b8) at /workspace/srcdir/glibc-2.17/csu/../sysdeps/x86_64/start.S unknown function (ip: (nil)) at (unknown file) ============================================================== Profile collected. A report will print at the next yield point. Disabling --trace-compile ============================================================== ====================================================================================== Information request received. A stacktrace will print followed by a 1.0 second profile. --trace-compile is enabled during profile collection. ====================================================================================== cmd: /opt/julia/bin/julia 1 running 0 of 1 signal (10): User defined signal 1 epoll_pwait at /lib/x86_64-linux-gnu/libc.so.6 (unknown line) uv__io_poll at /workspace/srcdir/libuv/src/unix/linux.c:1404:0 uv_run at /workspace/srcdir/libuv/src/unix/core.c:430:0 ijl_task_get_next at /source/src/scheduler.c:573:34 wait at ./task.jl:1652:0 (pc: 108) wait_forever at ./task.jl:1528:0 (pc: 4) jfptr_wait_forever_0.1 at /opt/julia/lib/julia/sys.so (unknown line) _jl_invoke at /source/src/gf.c:4590:23 [inlined] ijl_apply_generic at /source/src/gf.c:4838:12 jl_apply at /source/src/julia.h:2533:12 [inlined] start_task at /source/src/task.c:1278:23 unknown function (ip: (nil)) at (unknown file) ============================================================== Profile collected. A report will print at the next yield point. Disabling --trace-compile ============================================================== Overhead ╎ [+additional indent] Count File:Line Function ========================================================= Thread 1 (default) Task 0x000072c772aaa1d0 Total snapshots: 345. Utilization: 0% ╎345 @Base/task.jl:1528 wait_forever() 344╎ 345 @Base/task.jl:? wait() [1247] signal 15: Terminated in expression starting at /home/pkgeval/.julia/packages/NonlinearIntegrators/QdSjs/test/unit/network_integrators_unit.jl:27 PkgEval terminated after 2738.85s: test duration exceeded the time limit