Package evaluation of RegularizedLeastSquares on Julia 1.11.4 (a71dd056e0*) started at 2025-04-08T15:25:47.239 ################################################################################ # Set-up # Installing PkgEval dependencies (TestEnv)... Set-up completed after 9.03s ################################################################################ # Installation # Installing RegularizedLeastSquares... Resolving package versions... Updating `~/.julia/environments/v1.11/Project.toml` [1e9c538a] + RegularizedLeastSquares v0.16.8 Updating `~/.julia/environments/v1.11/Manifest.toml` [7d9f7c33] + Accessors v0.1.42 [79e6a3ab] + Adapt v4.3.0 [66dad0bd] + AliasTables v1.1.3 [dce04be8] + ArgCheck v2.5.0 [4fba245c] + ArrayInterface v7.18.0 [198e06fe] + BangBang v0.4.4 [9718e550] + Baselet v0.1.1 [62783981] + BitTwiddlingConvenienceFunctions v0.1.6 [2a0fbf3d] + CPUSummary v0.2.6 [f70d9fcc] + CommonWorldInvalidations v1.0.0 [34da2185] + Compat v4.16.0 [a33af91c] + CompositionsBase v0.1.2 [187b0558] + ConstructionBase v1.5.8 [6add18c4] + ContextVariablesX v0.1.3 [adafc99b] + CpuId v0.3.1 [9a962f9c] + DataAPI v1.16.0 [864edb3b] + DataStructures v0.18.22 [e2d170a0] + DataValueInterfaces v1.0.0 [244e2a9f] + DefineSingletons v0.1.2 [ffbed154] + DocStringExtensions v0.9.4 [e2ba6199] + ExprTools v0.1.10 [cc61a311] + FLoops v0.2.2 [b9860ae5] + FLoopsBase v0.1.1 [9aa1b823] + FastClosures v0.3.2 [3e5b6fbb] + HostCPUFeatures v0.1.17 [615f187c] + IfElse v0.1.1 [22cec73e] + InitialValues v0.3.1 [3587e190] + InverseFunctions v0.1.17 [92d709cd] + IrrationalConstants v0.2.4 [42fd0dbc] + IterativeSolvers v0.9.4 [82899510] + IteratorInterfaceExtensions v1.0.0 [b14d175d] + JuliaVariables v0.2.4 [10f19ff3] + LayoutPointers v0.1.17 [a4a2c56f] + LinearOperatorCollection v2.1.0 [5c8ed15e] + LinearOperators v2.9.0 [2ab3a3ac] + LogExpFunctions v0.3.29 [d8e11817] + MLStyle v0.4.17 [1914dd2f] + MacroTools v0.5.15 [d125e4d3] + ManualMemory v0.1.8 [128add7d] + MicroCollections v0.2.0 [e1d29d7a] + Missings v1.2.0 [71a1bf82] + NameResolution v0.1.5 [bac558e1] + OrderedCollections v1.8.0 ⌅ [aea7be01] + PrecompileTools v1.2.1 [21216c6a] + Preferences v1.4.3 [8162dcfd] + PrettyPrint v0.2.0 [43287f4e] + PtrArrays v1.3.0 [3cdcf5f2] + RecipesBase v1.3.4 [189a3867] + Reexport v1.2.2 [1e9c538a] + RegularizedLeastSquares v0.16.8 [ae029012] + Requires v1.3.1 [94e857df] + SIMDTypes v0.1.0 [efcf1570] + Setfield v1.1.2 [a2af1166] + SortingAlgorithms v1.2.1 [171d559e] + SplittablesBase v0.1.15 [aedffcd0] + Static v1.2.0 [0d7ed370] + StaticArrayInterface v1.8.0 [1e83bf80] + StaticArraysCore v1.4.3 [10745b16] + Statistics v1.11.1 [82ae8749] + StatsAPI v1.7.0 [2913bbd2] + StatsBase v0.34.4 [3783bdb8] + TableTraits v1.0.1 [bd369af6] + Tables v1.12.0 [a759f4b9] + TimerOutputs v0.5.28 [28d57a85] + Transducers v0.4.84 [3d5dd08c] + VectorizationBase v0.21.71 [56f22d72] + Artifacts v1.11.0 [2a0f44e3] + Base64 v1.11.0 [ade2ca70] + Dates v1.11.0 [8ba89e20] + Distributed v1.11.0 [9fa8497b] + Future v1.11.0 [b77e0a4c] + InteractiveUtils v1.11.0 [8f399da3] + Libdl v1.11.0 [37e2e46d] + LinearAlgebra v1.11.0 [56ddb016] + Logging v1.11.0 [d6f4376e] + Markdown v1.11.0 [de0858da] + Printf v1.11.0 [9a3f8284] + Random v1.11.0 [ea8e919c] + SHA v0.7.0 [9e88b42a] + Serialization v1.11.0 [6462fe0b] + Sockets v1.11.0 [2f01184e] + SparseArrays v1.11.0 [fa267f1f] + TOML v1.0.3 [8dfed614] + Test v1.11.0 [cf7118a7] + UUIDs v1.11.0 [4ec0a83e] + Unicode v1.11.0 [e66e0078] + CompilerSupportLibraries_jll v1.1.1+0 [4536629a] + OpenBLAS_jll v0.3.27+1 [bea87d4a] + SuiteSparse_jll v7.7.0+0 [8e850b90] + libblastrampoline_jll v5.11.0+0 Info Packages marked with ⌅ have new versions available but compatibility constraints restrict them from upgrading. To see why use `status --outdated -m` Installation completed after 2.68s ################################################################################ # Precompilation # Precompiling PkgEval dependencies... Precompiling package dependencies... Precompilation completed after 42.17s ################################################################################ # Testing # Testing RegularizedLeastSquares Status `/tmp/jl_BR0suY/Project.toml` [7a1cc6ca] FFTW v1.8.1 [cc61a311] FLoops v0.2.2 [42fd0dbc] IterativeSolvers v0.9.4 [27aeb0d3] JLArrays v0.2.0 [a4a2c56f] LinearOperatorCollection v2.1.0 [5c8ed15e] LinearOperators v2.9.0 [1e9c538a] RegularizedLeastSquares v0.16.8 [10745b16] Statistics v1.11.1 [2913bbd2] StatsBase v0.34.4 [3d5dd08c] VectorizationBase v0.21.71 [b77e0a4c] InteractiveUtils v1.11.0 [37e2e46d] LinearAlgebra v1.11.0 [9a3f8284] Random v1.11.0 [2f01184e] SparseArrays v1.11.0 [8dfed614] Test v1.11.0 Status `/tmp/jl_BR0suY/Manifest.toml` [621f4979] AbstractFFTs v1.5.0 [7d9f7c33] Accessors v0.1.42 [79e6a3ab] Adapt v4.3.0 [66dad0bd] AliasTables v1.1.3 [dce04be8] ArgCheck v2.5.0 [4fba245c] ArrayInterface v7.18.0 [a9b6321e] Atomix v1.1.1 [198e06fe] BangBang v0.4.4 [9718e550] Baselet v0.1.1 [62783981] BitTwiddlingConvenienceFunctions v0.1.6 [fa961155] CEnum v0.5.0 [2a0fbf3d] CPUSummary v0.2.6 [f70d9fcc] CommonWorldInvalidations v1.0.0 [34da2185] Compat v4.16.0 [a33af91c] CompositionsBase v0.1.2 [187b0558] ConstructionBase v1.5.8 [6add18c4] ContextVariablesX v0.1.3 [adafc99b] CpuId v0.3.1 [9a962f9c] DataAPI v1.16.0 [864edb3b] DataStructures v0.18.22 [e2d170a0] DataValueInterfaces v1.0.0 [244e2a9f] DefineSingletons v0.1.2 [ffbed154] DocStringExtensions v0.9.4 [e2ba6199] ExprTools v0.1.10 [7a1cc6ca] FFTW v1.8.1 [cc61a311] FLoops v0.2.2 [b9860ae5] FLoopsBase v0.1.1 [9aa1b823] FastClosures v0.3.2 [0c68f7d7] GPUArrays v11.2.2 [46192b85] GPUArraysCore v0.2.0 [076d061b] HashArrayMappedTries v0.2.0 [3e5b6fbb] HostCPUFeatures v0.1.17 [615f187c] IfElse v0.1.1 [22cec73e] InitialValues v0.3.1 [3587e190] InverseFunctions v0.1.17 [92d709cd] IrrationalConstants v0.2.4 [42fd0dbc] IterativeSolvers v0.9.4 [82899510] IteratorInterfaceExtensions v1.0.0 [27aeb0d3] JLArrays v0.2.0 [692b3bcd] JLLWrappers v1.7.0 [b14d175d] JuliaVariables v0.2.4 [63c18a36] KernelAbstractions v0.9.34 [929cbde3] LLVM v9.2.0 [10f19ff3] LayoutPointers v0.1.17 [a4a2c56f] LinearOperatorCollection v2.1.0 [5c8ed15e] LinearOperators v2.9.0 [2ab3a3ac] LogExpFunctions v0.3.29 [d8e11817] MLStyle v0.4.17 [1914dd2f] MacroTools v0.5.15 [d125e4d3] ManualMemory v0.1.8 [128add7d] MicroCollections v0.2.0 [e1d29d7a] Missings v1.2.0 [71a1bf82] NameResolution v0.1.5 [bac558e1] OrderedCollections v1.8.0 ⌅ [aea7be01] PrecompileTools v1.2.1 [21216c6a] Preferences v1.4.3 [8162dcfd] PrettyPrint v0.2.0 [43287f4e] PtrArrays v1.3.0 [3cdcf5f2] RecipesBase v1.3.4 [189a3867] Reexport v1.2.2 [1e9c538a] RegularizedLeastSquares v0.16.8 [ae029012] Requires v1.3.1 [94e857df] SIMDTypes v0.1.0 [7e506255] ScopedValues v1.3.0 [efcf1570] Setfield v1.1.2 [a2af1166] SortingAlgorithms v1.2.1 [171d559e] SplittablesBase v0.1.15 [aedffcd0] Static v1.2.0 [0d7ed370] StaticArrayInterface v1.8.0 [90137ffa] StaticArrays v1.9.13 [1e83bf80] StaticArraysCore v1.4.3 [10745b16] Statistics v1.11.1 [82ae8749] StatsAPI v1.7.0 [2913bbd2] StatsBase v0.34.4 [3783bdb8] TableTraits v1.0.1 [bd369af6] Tables v1.12.0 [a759f4b9] TimerOutputs v0.5.28 [28d57a85] Transducers v0.4.84 [013be700] UnsafeAtomics v0.3.0 [3d5dd08c] VectorizationBase v0.21.71 [f5851436] FFTW_jll v3.3.11+0 [1d5cc7b8] IntelOpenMP_jll v2025.0.4+0 [dad2f222] LLVMExtra_jll v0.0.35+0 [856f044c] MKL_jll v2025.0.1+1 [1317d2d5] oneTBB_jll v2022.0.0+0 [0dad84c5] ArgTools v1.1.2 [56f22d72] Artifacts v1.11.0 [2a0f44e3] Base64 v1.11.0 [ade2ca70] Dates v1.11.0 [8ba89e20] Distributed v1.11.0 [f43a241f] Downloads v1.6.0 [7b1f6079] FileWatching v1.11.0 [9fa8497b] Future v1.11.0 [b77e0a4c] InteractiveUtils v1.11.0 [4af54fe1] LazyArtifacts v1.11.0 [b27032c2] LibCURL v0.6.4 [76f85450] LibGit2 v1.11.0 [8f399da3] Libdl v1.11.0 [37e2e46d] LinearAlgebra v1.11.0 [56ddb016] Logging v1.11.0 [d6f4376e] Markdown v1.11.0 [ca575930] NetworkOptions v1.2.0 [44cfe95a] Pkg v1.11.0 [de0858da] Printf v1.11.0 [9a3f8284] Random v1.11.0 [ea8e919c] SHA v0.7.0 [9e88b42a] Serialization v1.11.0 [6462fe0b] Sockets v1.11.0 [2f01184e] SparseArrays v1.11.0 [fa267f1f] TOML v1.0.3 [a4e569a6] Tar v1.10.0 [8dfed614] Test v1.11.0 [cf7118a7] UUIDs v1.11.0 [4ec0a83e] Unicode v1.11.0 [e66e0078] CompilerSupportLibraries_jll v1.1.1+0 [deac9b47] LibCURL_jll v8.6.0+0 [e37daf67] LibGit2_jll v1.7.2+0 [29816b5a] LibSSH2_jll v1.11.0+1 [c8ffd9c3] MbedTLS_jll v2.28.6+0 [14a3606d] MozillaCACerts_jll v2023.12.12 [4536629a] OpenBLAS_jll v0.3.27+1 [bea87d4a] SuiteSparse_jll v7.7.0+0 [83775a58] Zlib_jll v1.2.13+1 [8e850b90] libblastrampoline_jll v5.11.0+0 [8e850ede] nghttp2_jll v1.59.0+0 [3f19e933] p7zip_jll v17.4.0+2 Info Packages marked with ⌅ have new versions available but compatibility constraints restrict them from upgrading. Testing Running tests... Precompiling LinearOperatorFFTWExt... 2590.7 ms ✓ LinearOperatorCollection → LinearOperatorFFTWExt 1 dependency successfully precompiled in 3 seconds. 43 already precompiled. Precompiling JLArrays... 5316.0 ms ✓ JLArrays 1 dependency successfully precompiled in 8 seconds. 50 already precompiled. Precompiling LinearOperatorGPUArraysExt... 8326.0 ms ✓ LinearOperatorCollection → LinearOperatorGPUArraysExt 1 dependency successfully precompiled in 10 seconds. 60 already precompiled. [ Info: test L2-regularization [ Info: test L1-regularization [ Info: rel. L1 error : 0.0011220302195384059 vs 0.003914031436659023 [ Info: test L21-regularization [ Info: rel. L21 error : 0.0007747499587714187 vs 0.0030929973567180307 [ Info: test TV-regularization [ Info: rel. TV error : 0.010261963087016573 vs 0.04127503586682324 [ Info: test positivity-constraint [ Info: test realness-constraint [ Info: test nuclear norm regularization [ Info: rel. LR error : 0.01932675905926398 vs 0.0386903818350639 [ Info: test LLR regularization [ Info: rel. LLR error : 0.005295573043008795 vs 0.013467979891480759 [ Info: test Overlapping LLR regularization [ Info: rel. LLR error : 0.006647729244959813 vs 0.013467979891480759 [ Info: test LLR 3D regularization [ Info: rel. LLR 3D error : 0.004034859176560987 vs 0.013379388874147137 [ Info: test L2-regularization [ Info: test L1-regularization [ Info: rel. L1 error : 0.0011220302195384059 vs 0.003914031436659023 [ Info: test L21-regularization L21 Prox: Error During Test at /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testProxMaps.jl:303 Got exception outside of a @test This kernel is unavailable for backend CPU Stacktrace: [1] error(s::String) @ Base ./error.jl:35 [2] (::RegularizedLeastSquaresGPUArraysExt.var"#proxL21_kernel#14"{RegularizedLeastSquaresGPUArraysExt.var"#gpu_proxL21_kernel#13"})(dev::JLBackend, sz::KernelAbstractions.NDIteration.DynamicSize, range::KernelAbstractions.NDIteration.DynamicSize) @ RegularizedLeastSquaresGPUArraysExt ~/.julia/packages/KernelAbstractions/sWSE0/src/macros.jl:65 [3] (::RegularizedLeastSquaresGPUArraysExt.var"#proxL21_kernel#14"{RegularizedLeastSquaresGPUArraysExt.var"#gpu_proxL21_kernel#13"})(dev::JLBackend) @ RegularizedLeastSquaresGPUArraysExt ~/.julia/packages/KernelAbstractions/sWSE0/src/macros.jl:55 [4] proxL21!(x::JLArray{ComplexF64, 1}, λ::Float64, slices::Int64) @ RegularizedLeastSquaresGPUArraysExt ~/.julia/packages/RegularizedLeastSquares/HOcqi/ext/RegularizedLeastSquaresGPUArraysExt/ProxL21.jl:9 [5] prox! @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/src/proximalMaps/ProxL21.jl:27 [inlined] [6] prox! @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/src/Regularization/Regularization.jl:39 [inlined] [7] testL21Prox(N::Int64; numPeaks::Int64, numSlices::Int64, noisySlices::Int64, σ::Float64, arrayType::Type{JLArray}) @ Main ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testProxMaps.jl:62 [8] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:1704 [inlined] [9] macro expansion @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testProxMaps.jl:303 [inlined] [10] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:1704 [inlined] [11] macro expansion @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testProxMaps.jl:301 [inlined] [12] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:1704 [inlined] [13] top-level scope @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testProxMaps.jl:299 [14] include(fname::String) @ Main ./sysimg.jl:38 [15] macro expansion @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/runtests.jl:13 [inlined] [16] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:1704 [inlined] [17] top-level scope @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/runtests.jl:11 [18] include(fname::String) @ Main ./sysimg.jl:38 [19] top-level scope @ none:6 [20] eval @ ./boot.jl:430 [inlined] [21] exec_options(opts::Base.JLOptions) @ Base ./client.jl:296 [22] _start() @ Base ./client.jl:531 [ Info: test TV-regularization TV Prox: Error During Test at /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testProxMaps.jl:304 Got exception outside of a @test This kernel is unavailable for backend CPU Stacktrace: [1] error(s::String) @ Base ./error.jl:35 [2] grad_t_kernel_1!(dev::JLBackend, sz::KernelAbstractions.NDIteration.DynamicSize, range::KernelAbstractions.NDIteration.DynamicSize) @ LinearOperatorGPUArraysExt ~/.julia/packages/KernelAbstractions/sWSE0/src/macros.jl:65 [3] grad_t_kernel_1!(dev::JLBackend) @ LinearOperatorGPUArraysExt ~/.julia/packages/KernelAbstractions/sWSE0/src/macros.jl:55 [4] grad_t!(res::JLArray{ComplexF64, 1}, g::JLArray{ComplexF64, 1}, shape::Tuple{Int64, Int64}, dirs::Vector{CartesianIndex{2}}, dims::UnitRange{Int64}, dim_ends::Vector{Int64}, tmp::JLArray{ComplexF64, 1}) @ LinearOperatorGPUArraysExt ~/.julia/packages/LinearOperatorCollection/qbON0/ext/LinearOperatorGPUArraysExt/GradientOp.jl:53 [5] (::LinearOperatorCollection.var"#33#36"{Tuple{Int64, Int64}, UnitRange{Int64}, JLArray{ComplexF64, 1}, Vector{Int64}, Vector{CartesianIndex{2}}})(res::JLArray{ComplexF64, 1}, x::JLArray{ComplexF64, 1}) @ LinearOperatorCollection ~/.julia/packages/LinearOperatorCollection/qbON0/src/GradientOp.jl:39 [6] prod3!(res::JLArray{ComplexF64, 1}, prod!::LinearOperatorCollection.var"#33#36"{Tuple{Int64, Int64}, UnitRange{Int64}, JLArray{ComplexF64, 1}, Vector{Int64}, Vector{CartesianIndex{2}}}, v::JLArray{ComplexF64, 1}, α::Float64, β::Int64, Mv5::JLArray{ComplexF64, 1}) @ LinearOperators ~/.julia/packages/LinearOperators/ixrUQ/src/operations.jl:17 [7] mul!(res::JLArray{ComplexF64, 1}, op::TransposeLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperatorCollection.var"#32#35"{Tuple{Int64, Int64}, UnitRange{Int64}, Vector{Int64}, Vector{CartesianIndex{2}}}, LinearOperatorCollection.var"#33#36"{Tuple{Int64, Int64}, UnitRange{Int64}, JLArray{ComplexF64, 1}, Vector{Int64}, Vector{CartesianIndex{2}}}, LinearOperatorCollection.var"#34#37"{Tuple{Int64, Int64}, UnitRange{Int64}, JLArray{ComplexF64, 1}, Vector{Int64}, Vector{CartesianIndex{2}}}, JLArray{ComplexF64, 1}}}, v::JLArray{ComplexF64, 1}, α::Float64, β::Int64) @ LinearOperators ~/.julia/packages/LinearOperators/ixrUQ/src/adjtrans.jl:183 [8] proxTV!(x::JLArray{ComplexF64, 1}, λ::Float64, p::RegularizedLeastSquares.TVParams{ComplexF64, JLArray{ComplexF64, 1}, LinearOperator{ComplexF64, Int64, LinearOperatorCollection.var"#32#35"{Tuple{Int64, Int64}, UnitRange{Int64}, Vector{Int64}, Vector{CartesianIndex{2}}}, LinearOperatorCollection.var"#33#36"{Tuple{Int64, Int64}, UnitRange{Int64}, JLArray{ComplexF64, 1}, Vector{Int64}, Vector{CartesianIndex{2}}}, LinearOperatorCollection.var"#34#37"{Tuple{Int64, Int64}, UnitRange{Int64}, JLArray{ComplexF64, 1}, Vector{Int64}, Vector{CartesianIndex{2}}}, JLArray{ComplexF64, 1}}}; iterationsTV::Int64, kwargs::@Kwargs{}) @ RegularizedLeastSquares ~/.julia/packages/RegularizedLeastSquares/HOcqi/src/proximalMaps/ProxTV.jl:108 [9] proxTV!(reg::TVRegularization{Float64, 2, Int64}, x::JLArray{ComplexF64, 1}, λ::Float64, shape::Tuple{Int64, Int64}, dims::UnitRange{Int64}; iterationsTV::Int64, kwargs::@Kwargs{}) @ RegularizedLeastSquares ~/.julia/packages/RegularizedLeastSquares/HOcqi/src/proximalMaps/ProxTV.jl:86 [10] proxTV! @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/src/proximalMaps/ProxTV.jl:82 [inlined] [11] proxTV!(reg::TVRegularization{Float64, 2, Int64}, x::JLArray{ComplexF64, 1}, λ::Float64; shape::Tuple{Int64, Int64}, dims::UnitRange{Int64}, kwargs::@Kwargs{iterationsTV::Int64}) @ RegularizedLeastSquares ~/.julia/packages/RegularizedLeastSquares/HOcqi/src/proximalMaps/ProxTV.jl:67 [12] prox!(reg::TVRegularization{Float64, 2, Int64}, x::JLArray{ComplexF64, 1}, λ::Float64) @ RegularizedLeastSquares ~/.julia/packages/RegularizedLeastSquares/HOcqi/src/proximalMaps/ProxTV.jl:64 [13] prox! @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/src/Regularization/Regularization.jl:39 [inlined] [14] testTVprox(N::Int64; numEdges::Int64, σ::Float64, arrayType::Type{JLArray}) @ Main ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testProxMaps.jl:94 [15] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:1704 [inlined] [16] macro expansion @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testProxMaps.jl:304 [inlined] [17] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:1704 [inlined] [18] macro expansion @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testProxMaps.jl:301 [inlined] [19] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:1704 [inlined] [20] top-level scope @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testProxMaps.jl:299 [21] include(fname::String) @ Main ./sysimg.jl:38 [22] macro expansion @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/runtests.jl:13 [inlined] [23] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:1704 [inlined] [24] top-level scope @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/runtests.jl:11 [25] include(fname::String) @ Main ./sysimg.jl:38 [26] top-level scope @ none:6 [27] eval @ ./boot.jl:430 [inlined] [28] exec_options(opts::Base.JLOptions) @ Base ./client.jl:296 [29] _start() @ Base ./client.jl:531 TV Prox Directional: Error During Test at /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testProxMaps.jl:305 Got exception outside of a @test This kernel is unavailable for backend CPU Stacktrace: [1] error(s::String) @ Base ./error.jl:35 [2] grad_t_kernel_1!(dev::JLBackend, sz::KernelAbstractions.NDIteration.DynamicSize, range::KernelAbstractions.NDIteration.DynamicSize) @ LinearOperatorGPUArraysExt ~/.julia/packages/KernelAbstractions/sWSE0/src/macros.jl:65 [3] grad_t_kernel_1!(dev::JLBackend) @ LinearOperatorGPUArraysExt ~/.julia/packages/KernelAbstractions/sWSE0/src/macros.jl:55 [4] grad_t! @ ~/.julia/packages/LinearOperatorCollection/qbON0/ext/LinearOperatorGPUArraysExt/GradientOp.jl:27 [inlined] [5] #40 @ ~/.julia/packages/LinearOperatorCollection/qbON0/src/GradientOp.jl:53 [inlined] [6] prod3!(res::JLArray{ComplexF64, 1}, prod!::LinearOperatorCollection.var"#40#43"{Tuple{Int64, Int64}, CartesianIndex{2}}, v::JLArray{ComplexF64, 1}, α::Float64, β::Int64, Mv5::JLArray{ComplexF64, 1}) @ LinearOperators ~/.julia/packages/LinearOperators/ixrUQ/src/operations.jl:17 [7] mul!(res::JLArray{ComplexF64, 1}, op::TransposeLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperatorCollection.var"#39#42"{Tuple{Int64, Int64}, CartesianIndex{2}}, LinearOperatorCollection.var"#40#43"{Tuple{Int64, Int64}, CartesianIndex{2}}, LinearOperatorCollection.var"#41#44"{Tuple{Int64, Int64}, CartesianIndex{2}}, JLArray{ComplexF64, 1}}}, v::JLArray{ComplexF64, 1}, α::Float64, β::Int64) @ LinearOperators ~/.julia/packages/LinearOperators/ixrUQ/src/adjtrans.jl:183 [8] proxTV!(x::JLArray{ComplexF64, 1}, λ::Float64, p::RegularizedLeastSquares.TVParams{ComplexF64, JLArray{ComplexF64, 1}, LinearOperator{ComplexF64, Int64, LinearOperatorCollection.var"#39#42"{Tuple{Int64, Int64}, CartesianIndex{2}}, LinearOperatorCollection.var"#40#43"{Tuple{Int64, Int64}, CartesianIndex{2}}, LinearOperatorCollection.var"#41#44"{Tuple{Int64, Int64}, CartesianIndex{2}}, JLArray{ComplexF64, 1}}}; iterationsTV::Int64, kwargs::@Kwargs{}) @ RegularizedLeastSquares ~/.julia/packages/RegularizedLeastSquares/HOcqi/src/proximalMaps/ProxTV.jl:108 [9] proxTV!(reg::TVRegularization{Float64, 2, Int64}, x::JLArray{ComplexF64, 1}, λ::Float64, shape::Tuple{Int64, Int64}, dims::Int64; iterationsTV::Int64, kwargs::@Kwargs{}) @ RegularizedLeastSquares ~/.julia/packages/RegularizedLeastSquares/HOcqi/src/proximalMaps/ProxTV.jl:86 [10] proxTV! @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/src/proximalMaps/ProxTV.jl:82 [inlined] [11] proxTV!(reg::TVRegularization{Float64, 2, Int64}, x::JLArray{ComplexF64, 1}, λ::Float64; shape::Tuple{Int64, Int64}, dims::Int64, kwargs::@Kwargs{iterationsTV::Int64}) @ RegularizedLeastSquares ~/.julia/packages/RegularizedLeastSquares/HOcqi/src/proximalMaps/ProxTV.jl:67 [12] prox!(reg::TVRegularization{Float64, 2, Int64}, x::JLArray{ComplexF64, 1}, λ::Float64) @ RegularizedLeastSquares ~/.julia/packages/RegularizedLeastSquares/HOcqi/src/proximalMaps/ProxTV.jl:64 [13] #prox!#18 @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/src/Regularization/Regularization.jl:39 [inlined] [14] testDirectionalTVprox(N::Int64; numEdges::Int64, σ::Float64, T::Type, arrayType::Type{JLArray}) @ Main ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testProxMaps.jl:118 [15] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:1704 [inlined] [16] macro expansion @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testProxMaps.jl:305 [inlined] [17] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:1704 [inlined] [18] macro expansion @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testProxMaps.jl:301 [inlined] [19] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:1704 [inlined] [20] top-level scope @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testProxMaps.jl:299 [21] include(fname::String) @ Main ./sysimg.jl:38 [22] macro expansion @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/runtests.jl:13 [inlined] [23] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:1704 [inlined] [24] top-level scope @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/runtests.jl:11 [25] include(fname::String) @ Main ./sysimg.jl:38 [26] top-level scope @ none:6 [27] eval @ ./boot.jl:430 [inlined] [28] exec_options(opts::Base.JLOptions) @ Base ./client.jl:296 [29] _start() @ Base ./client.jl:531 [ Info: test positivity-constraint [ Info: test realness-constraint [ Info: test nuclear norm regularization [ Info: rel. LR error : 0.019326759059263978 vs 0.0386903818350639 [ Info: test LLR regularization [ Info: rel. LLR error : 0.005295573043008797 vs 0.013467979891480759 [ Info: test Overlapping LLR regularization [ Info: rel. LLR error : 0.006647729244959813 vs 0.013467979891480759 [ Info: test LLR 3D regularization [ Info: rel. LLR 3D error : 0.004034859176560987 vs 0.013379388874147137 [ Info: Test λ conversion for prox!(L1Regularization, Float32, Float64) [ Info: Test λ conversion for prox!(L21Regularization, Float32, Float64) [ Info: Test λ conversion for prox!(L2Regularization, Float32, Float64) [ Info: Test λ conversion for prox!(LLRRegularization, Float32, Float64) [ Info: Test λ conversion for prox!(NuclearRegularization, Float32, Float64) [ Info: Test λ conversion for prox!(TVRegularization, Float32, Float64) [ Info: Test λ conversion for prox!(L1Regularization, Float64, Float32) [ Info: Test λ conversion for prox!(L21Regularization, Float64, Float32) [ Info: Test λ conversion for prox!(L2Regularization, Float64, Float32) [ Info: Test λ conversion for prox!(LLRRegularization, Float64, Float32) [ Info: Test λ conversion for prox!(NuclearRegularization, Float64, Float32) [ Info: Test λ conversion for prox!(TVRegularization, Float64, Float32) [ Info: Test λ conversion for prox!(L1Regularization, ComplexF32, Float64) [ Info: Test λ conversion for prox!(L21Regularization, ComplexF32, Float64) [ Info: Test λ conversion for prox!(L2Regularization, ComplexF32, Float64) [ Info: Test λ conversion for prox!(LLRRegularization, ComplexF32, Float64) [ Info: Test λ conversion for prox!(NuclearRegularization, ComplexF32, Float64) [ Info: Test λ conversion for prox!(TVRegularization, ComplexF32, Float64) [ Info: Test λ conversion for prox!(L1Regularization, ComplexF64, Float32) [ Info: Test λ conversion for prox!(L21Regularization, ComplexF64, Float32) [ Info: Test λ conversion for prox!(L2Regularization, ComplexF64, Float32) [ Info: Test λ conversion for prox!(LLRRegularization, ComplexF64, Float32) [ Info: Test λ conversion for prox!(NuclearRegularization, ComplexF64, Float32) [ Info: Test λ conversion for prox!(TVRegularization, ComplexF64, Float32) ┌ Warning: The following arguments were passed but filtered out: iterations. Please watch closely if this introduces unexpexted behaviour in your code. └ @ RegularizedLeastSquares ~/.julia/packages/RegularizedLeastSquares/HOcqi/src/RegularizedLeastSquares.jl:273 [ Info: Testing solver DirectSolver: Float32[0.07435727, 0.1361165] ≈ Float32[0.074357316, 0.13611645] ┌ Warning: The following arguments were passed but filtered out: iterations. Please watch closely if this introduces unexpexted behaviour in your code. └ @ RegularizedLeastSquares ~/.julia/packages/RegularizedLeastSquares/HOcqi/src/RegularizedLeastSquares.jl:273 [ Info: Testing solver PseudoInverse: Float32[0.07435727, 0.1361165] ≈ Float32[0.07435728, 0.13611647] [ Info: Testing solver CGNR: Float32[0.07435727, 0.1361165] ≈ Float32[0.07435724, 0.13611646] [ Info: Testing solver ADMM: Float32[0.07435727, 0.1361165] ≈ Float32[0.07435749, 0.13611618] [ Info: Testing solver SplitBregman: Float32[0.07435727, 0.1361165] ≈ Float32[0.07435749, 0.13611618] [ Info: Testing solver FISTA: Float32[0.07435727, 0.1361165] ≈ Float32[0.074357376, 0.13611634] [ Info: Testing solver OptISTA: Float32[0.07435727, 0.1361165] ≈ Float32[0.07435714, 0.1361167] [ Info: Testing solver POGM: Float32[0.07435727, 0.1361165] ≈ Float32[0.074357316, 0.13611645] [ Info: Testing solver Kaczmarz: Float32[0.07435727, 0.1361165] ≈ Float32[0.07435727, 0.1361165] ┌ Warning: The following arguments were passed but filtered out: iterations. Please watch closely if this introduces unexpexted behaviour in your code. └ @ RegularizedLeastSquares ~/.julia/packages/RegularizedLeastSquares/HOcqi/src/RegularizedLeastSquares.jl:273 [ Info: Testing solver DirectSolver: ComplexF32[0.19463056f0 + 0.4517445f0im, 0.6611685f0 + 0.7286364f0im] ≈ ComplexF32[0.1946308f0 + 0.45174462f0im, 0.6611682f0 + 0.72863644f0im] ┌ Warning: The following arguments were passed but filtered out: iterations. Please watch closely if this introduces unexpexted behaviour in your code. └ @ RegularizedLeastSquares ~/.julia/packages/RegularizedLeastSquares/HOcqi/src/RegularizedLeastSquares.jl:273 [ Info: Testing solver PseudoInverse: ComplexF32[0.19463056f0 + 0.4517445f0im, 0.6611685f0 + 0.7286364f0im] ≈ ComplexF32[0.19463061f0 + 0.45174438f0im, 0.6611687f0 + 0.7286365f0im] [ Info: Testing solver CGNR: ComplexF32[0.19463056f0 + 0.4517445f0im, 0.6611685f0 + 0.7286364f0im] ≈ ComplexF32[0.19463085f0 + 0.4517445f0im, 0.6611688f0 + 0.7286371f0im] [ Info: Testing solver ADMM: ComplexF32[0.19463056f0 + 0.4517445f0im, 0.6611685f0 + 0.7286364f0im] ≈ ComplexF32[0.19463073f0 + 0.45174506f0im, 0.661168f0 + 0.72863597f0im] [ Info: Testing solver SplitBregman: ComplexF32[0.19463056f0 + 0.4517445f0im, 0.6611685f0 + 0.7286364f0im] ≈ ComplexF32[0.19463079f0 + 0.45174444f0im, 0.6611684f0 + 0.72863656f0im] [ Info: Testing solver FISTA: ComplexF32[0.19463056f0 + 0.4517445f0im, 0.6611685f0 + 0.7286364f0im] ≈ ComplexF32[0.19462618f0 + 0.45182946f0im, 0.66111344f0 + 0.72854805f0im] [ Info: Testing solver OptISTA: ComplexF32[0.19463056f0 + 0.4517445f0im, 0.6611685f0 + 0.7286364f0im] ≈ ComplexF32[0.19462813f0 + 0.45179334f0im, 0.66113687f0 + 0.72858566f0im] [ Info: Testing solver POGM: ComplexF32[0.19463056f0 + 0.4517445f0im, 0.6611685f0 + 0.7286364f0im] ≈ ComplexF32[0.19462703f0 + 0.45179576f0im, 0.661136f0 + 0.72858244f0im] [ Info: Testing solver Kaczmarz: ComplexF32[0.19463056f0 + 0.4517445f0im, 0.6611685f0 + 0.7286364f0im] ≈ ComplexF32[0.19463058f0 + 0.45174453f0im, 0.6611685f0 + 0.7286364f0im] [ Info: Testing solver CGNR: ComplexF32[0.19463056f0 + 0.4517445f0im, 0.6611685f0 + 0.7286364f0im] ≈ ComplexF32[0.19463058f0 + 0.45174536f0im, 0.6611687f0 + 0.72863746f0im] [ Info: Testing solver ADMM: ComplexF32[0.19463056f0 + 0.4517445f0im, 0.6611685f0 + 0.7286364f0im] ≈ ComplexF32[0.19463073f0 + 0.45174482f0im, 0.66116816f0 + 0.7286362f0im] [ Info: Testing solver SplitBregman: ComplexF32[0.19463056f0 + 0.4517445f0im, 0.6611685f0 + 0.7286364f0im] ≈ ComplexF32[0.19463089f0 + 0.45174366f0im, 0.6611688f0 + 0.7286374f0im] [ Info: Testing solver FISTA: ComplexF32[0.19463056f0 + 0.4517445f0im, 0.6611685f0 + 0.7286364f0im] ≈ ComplexF32[0.19462578f0 + 0.45182908f0im, 0.66111416f0 + 0.7285482f0im] [ Info: Testing solver OptISTA: ComplexF32[0.19463056f0 + 0.4517445f0im, 0.6611685f0 + 0.7286364f0im] ≈ ComplexF32[0.19462757f0 + 0.45179307f0im, 0.66113746f0 + 0.72858596f0im] [ Info: Testing solver POGM: ComplexF32[0.19463056f0 + 0.4517445f0im, 0.6611685f0 + 0.7286364f0im] ≈ ComplexF32[0.19462746f0 + 0.45179594f0im, 0.6611355f0 + 0.728583f0im] [ Info: Testing solver POGM w/o restart: relative error = 0.004481134173874222 [ Info: Testing solver POGM w/ gradient restart: relative error = 0.004481134173874214 [ Info: Testing solver POGM w/o restart and after re-scaling: relative error = 0.002316237467248633 [ Info: Testing solver OptISTA w/o restart: relative error = 0.00448113417387615 [ Info: Testing solver OptISTA w/o restart and after re-scaling: relative error = 0.0023162374672517612 [ Info: Testing solver FISTA w/o restart: relative error = 0.004481134173874337 [ Info: Testing solver FISTA w/ gradient restart: relative error = 0.00448113417387421 [ Info: Testing solver FISTA w/o restart and after re-scaling: relative error = 0.0023162374672532466 [ Info: Testing solver ADMM w/o restart: relative error = 0.0022405766537521832 [ Info: Testing solver ADMM w/o restart and after re-scaling: relative error = 0.00015071320838663308 [ Info: Testing solver ADMM: relative error = 0.002240576653741469 [ Info: Testing solver ADMM: relative error = 0.0022405766537644373 [ Info: Testing solver ADMM: relative error = 0.0022405766537519542 [ Info: Testing solver SplitBregman: relative error = 2.1633360003392924e-8 [ Info: Testing solver SplitBregman: relative error = 2.1633360003392924e-8 ┌ Warning: The following arguments were passed but filtered out: iterations. Please watch closely if this introduces unexpexted behaviour in your code. └ @ RegularizedLeastSquares ~/.julia/packages/RegularizedLeastSquares/HOcqi/src/RegularizedLeastSquares.jl:273 [ Info: Testing solver DirectSolver: [0.6611685583355441, 0.7286364388306961] ≈ [0.6611685583355441, 0.728636438830696] ┌ Warning: The following arguments were passed but filtered out: iterations. Please watch closely if this introduces unexpexted behaviour in your code. └ @ RegularizedLeastSquares ~/.julia/packages/RegularizedLeastSquares/HOcqi/src/RegularizedLeastSquares.jl:273 [ Info: Testing solver PseudoInverse: [0.6611685583355441, 0.7286364388306961] ≈ [0.6611685583355444, 0.728636438830696] [ Info: Testing solver CGNR: [0.6611685583355441, 0.7286364388306961] ≈ [0.6611685583355468, 0.7286364388306965] [ Info: Testing solver ADMM: [0.6611685583355441, 0.7286364388306961] ≈ [0.6611685583355454, 0.7286364388306906] [ Info: Testing solver SplitBregman: [0.6611685583355441, 0.7286364388306961] ≈ [0.6611685583355443, 0.7286364388306952] [ Info: Testing solver FISTA: [0.6611685583355441, 0.7286364388306961] ≈ [0.6610373767271625, 0.7290920106777331] [ Info: Testing solver OptISTA: [0.6611685583355441, 0.7286364388306961] ≈ [0.6610811838624546, 0.7289398758031513] [ Info: Testing solver POGM: [0.6611685583355441, 0.7286364388306961] ≈ [0.6610782228067104, 0.7289501590558962] [ Info: Testing solver Kaczmarz: [0.6611685583355441, 0.7286364388306961] ≈ [0.6611685583355442, 0.7286364388306957] ┌ Warning: The following arguments were passed but filtered out: iterations. Please watch closely if this introduces unexpexted behaviour in your code. └ @ RegularizedLeastSquares ~/.julia/packages/RegularizedLeastSquares/HOcqi/src/RegularizedLeastSquares.jl:273 [ Info: Testing solver DirectSolver: ComplexF64[0.26755021483368013 + 0.8104947638539546im, 0.11848853125656122 + 0.8532722765149262im] ≈ ComplexF64[0.26755021483368013 + 0.8104947638539548im, 0.11848853125656122 + 0.8532722765149257im] ┌ Warning: The following arguments were passed but filtered out: iterations. Please watch closely if this introduces unexpexted behaviour in your code. └ @ RegularizedLeastSquares ~/.julia/packages/RegularizedLeastSquares/HOcqi/src/RegularizedLeastSquares.jl:273 [ Info: Testing solver PseudoInverse: ComplexF64[0.26755021483368013 + 0.8104947638539546im, 0.11848853125656122 + 0.8532722765149262im] ≈ ComplexF64[0.26755021483368024 + 0.8104947638539549im, 0.11848853125656078 + 0.8532722765149257im] [ Info: Testing solver CGNR: ComplexF64[0.26755021483368013 + 0.8104947638539546im, 0.11848853125656122 + 0.8532722765149262im] ≈ ComplexF64[0.2675502148336803 + 0.810494763853956im, 0.11848853125656142 + 0.8532722765149261im] [ Info: Testing solver ADMM: ComplexF64[0.26755021483368013 + 0.8104947638539546im, 0.11848853125656122 + 0.8532722765149262im] ≈ ComplexF64[0.26755021483367997 + 0.8104947638539551im, 0.11848853125656107 + 0.8532722765149251im] [ Info: Testing solver SplitBregman: ComplexF64[0.26755021483368013 + 0.8104947638539546im, 0.11848853125656122 + 0.8532722765149262im] ≈ ComplexF64[0.2675502165659976 + 0.810494762143085im, 0.11848852962335436 + 0.8532722804664304im] [ Info: Testing solver FISTA: ComplexF64[0.26755021483368013 + 0.8104947638539546im, 0.11848853125656122 + 0.8532722765149262im] ≈ ComplexF64[0.26755004689208334 + 0.8104949297163327im, 0.11848868958974196 + 0.8532718934315497im] [ Info: Testing solver OptISTA: ComplexF64[0.26755021483368013 + 0.8104947638539546im, 0.11848853125656122 + 0.8532722765149262im] ≈ ComplexF64[0.2675505586034003 + 0.810494424339303im, 0.11848820715453653 + 0.8532730606710194im] [ Info: Testing solver POGM: ComplexF64[0.26755021483368013 + 0.8104947638539546im, 0.11848853125656122 + 0.8532722765149262im] ≈ ComplexF64[0.26755053855447436 + 0.8104944441395587im, 0.11848822605625042 + 0.8532730149382914im] [ Info: Testing solver Kaczmarz: ComplexF64[0.26755021483368013 + 0.8104947638539546im, 0.11848853125656122 + 0.8532722765149262im] ≈ ComplexF64[0.2675502148336802 + 0.8104947638539545im, 0.11848853125656122 + 0.8532722765149262im] [ Info: Testing solver CGNR: ComplexF64[0.26755021483368013 + 0.8104947638539546im, 0.11848853125656122 + 0.8532722765149262im] ≈ ComplexF64[0.26755021483368047 + 0.8104947638539559im, 0.11848853125656145 + 0.8532722765149272im] [ Info: Testing solver ADMM: ComplexF64[0.26755021483368013 + 0.8104947638539546im, 0.11848853125656122 + 0.8532722765149262im] ≈ ComplexF64[0.2675502148336801 + 0.8104947638539541im, 0.1184885312565614 + 0.8532722765149265im] [ Info: Testing solver SplitBregman: ComplexF64[0.26755021483368013 + 0.8104947638539546im, 0.11848853125656122 + 0.8532722765149262im] ≈ ComplexF64[0.26755021656599337 + 0.8104947621430472im, 0.11848852962334384 + 0.853272280466412im] [ Info: Testing solver FISTA: ComplexF64[0.26755021483368013 + 0.8104947638539546im, 0.11848853125656122 + 0.8532722765149262im] ≈ ComplexF64[0.2675500468920834 + 0.8104949297163324im, 0.11848868958974203 + 0.8532718934315505im] [ Info: Testing solver OptISTA: ComplexF64[0.26755021483368013 + 0.8104947638539546im, 0.11848853125656122 + 0.8532722765149262im] ≈ ComplexF64[0.26755055860340043 + 0.8104944243393021im, 0.11848820715453674 + 0.853273060671021im] [ Info: Testing solver POGM: ComplexF64[0.26755021483368013 + 0.8104947638539546im, 0.11848853125656122 + 0.8532722765149262im] ≈ ComplexF64[0.26755053855447414 + 0.8104944441395585im, 0.11848822605625073 + 0.8532730149382928im] [ Info: Testing solver POGM w/o restart: relative error = 0.004481133961033804 [ Info: Testing solver POGM w/ gradient restart: relative error = 0.0044811339610337335 [ Info: Testing solver POGM w/o restart and after re-scaling: relative error = 0.0023162372668549766 [ Info: Testing solver OptISTA w/o restart: relative error = 0.004481133961036319 [ Info: Testing solver OptISTA w/o restart and after re-scaling: relative error = 0.0023162372668586307 [ Info: Testing solver FISTA w/o restart: relative error = 0.004481133961033908 [ Info: Testing solver FISTA w/ gradient restart: relative error = 0.004481133961033687 [ Info: Testing solver FISTA w/o restart and after re-scaling: relative error = 0.0023162372668595384 [ Info: Testing solver ADMM w/o restart: relative error = 0.002240576547331751 [ Info: Testing solver ADMM w/o restart and after re-scaling: relative error = 0.00015071319380832545 [ Info: Testing solver ADMM: relative error = 0.002240576547327669 [ Info: Testing solver ADMM: relative error = 0.0022405765473130085 [ Info: Testing solver ADMM: relative error = 0.002240576547330994 [ Info: Testing solver SplitBregman: relative error = 2.1633381260746392e-8 [ Info: Testing solver SplitBregman: relative error = 2.163338130425753e-8 [ Info: Testing solver CGNR: Float32[0.07435727, 0.1361165] ≈ Float32[0.07435726, 0.1361164] ┌ Error: ErrorException("Scalar indexing is disallowed.\nInvocation of getindex resulted in scalar indexing of a GPU array.\nThis is typically caused by calling an iterating implementation of a method.\nSuch implementations *do not* execute on the GPU, but very slowly on the CPU,\nand therefore should be avoided.\n\nIf you want to allow scalar iteration, use `allowscalar` or `@allowscalar`\nto enable scalar iteration globally or for the operations in question.") └ @ Main ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:18 solver = ADMM: Test Failed at /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:11 Expression: try #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:12 =# S = createLinearSolver(solver, arrayType(A), iterations = 200) #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:13 =# x_approx = Array(solve!(S, arrayType(b))) #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:14 =# #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:14 =# @info "Testing solver $(solver): $(x) ≈ $(x_approx)" #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:15 =# #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:15 =# @test x_approx ≈ x rtol = 0.1 #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:16 =# true catch e #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:18 =# #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:18 =# @error e #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:19 =# false end Stacktrace: [1] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:679 [inlined] [2] macro expansion @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:11 [inlined] [3] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:1793 [inlined] [4] testRealLinearSolver(; arrayType::Type{JLArray}, elType::Type) @ Main ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:10 ┌ Error: ErrorException("Scalar indexing is disallowed.\nInvocation of getindex resulted in scalar indexing of a GPU array.\nThis is typically caused by calling an iterating implementation of a method.\nSuch implementations *do not* execute on the GPU, but very slowly on the CPU,\nand therefore should be avoided.\n\nIf you want to allow scalar iteration, use `allowscalar` or `@allowscalar`\nto enable scalar iteration globally or for the operations in question.") └ @ Main ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:18 solver = SplitBregman: Test Failed at /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:11 Expression: try #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:12 =# S = createLinearSolver(solver, arrayType(A), iterations = 200) #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:13 =# x_approx = Array(solve!(S, arrayType(b))) #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:14 =# #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:14 =# @info "Testing solver $(solver): $(x) ≈ $(x_approx)" #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:15 =# #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:15 =# @test x_approx ≈ x rtol = 0.1 #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:16 =# true catch e #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:18 =# #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:18 =# @error e #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:19 =# false end Stacktrace: [1] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:679 [inlined] [2] macro expansion @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:11 [inlined] [3] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:1793 [inlined] [4] testRealLinearSolver(; arrayType::Type{JLArray}, elType::Type) @ Main ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:10 [ Info: Testing solver FISTA: Float32[0.07435727, 0.1361165] ≈ Float32[0.07435733, 0.13611642] [ Info: Testing solver OptISTA: Float32[0.07435727, 0.1361165] ≈ Float32[0.074359596, 0.13611269] [ Info: Testing solver POGM: Float32[0.07435727, 0.1361165] ≈ Float32[0.07435961, 0.13611263] [ Info: Testing solver Kaczmarz: Float32[0.07435727, 0.1361165] ≈ Float32[0.07435727, 0.1361165] [ Info: Testing solver CGNR: ComplexF32[0.19463056f0 + 0.4517445f0im, 0.6611685f0 + 0.7286364f0im] ≈ ComplexF32[0.19463082f0 + 0.45174536f0im, 0.6611692f0 + 0.7286375f0im] ┌ Error: ErrorException("Scalar indexing is disallowed.\nInvocation of getindex resulted in scalar indexing of a GPU array.\nThis is typically caused by calling an iterating implementation of a method.\nSuch implementations *do not* execute on the GPU, but very slowly on the CPU,\nand therefore should be avoided.\n\nIf you want to allow scalar iteration, use `allowscalar` or `@allowscalar`\nto enable scalar iteration globally or for the operations in question.") └ @ Main ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:39 solver = ADMM: Test Failed at /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:32 Expression: try #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:33 =# S = createLinearSolver(solver, arrayType(A), iterations = 100) #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:34 =# x_approx = Array(solve!(S, arrayType(b))) #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:35 =# #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:35 =# @info "Testing solver $(solver): $(x) ≈ $(x_approx)" #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:36 =# #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:36 =# @test x_approx ≈ x rtol = 0.1 #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:37 =# true catch e #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:39 =# #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:39 =# @error e #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:40 =# false end Stacktrace: [1] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:679 [inlined] [2] macro expansion @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:32 [inlined] [3] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:1793 [inlined] [4] testComplexLinearSolver(; arrayType::Type{JLArray}, elType::Type) @ Main ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:31 ┌ Error: ErrorException("Scalar indexing is disallowed.\nInvocation of getindex resulted in scalar indexing of a GPU array.\nThis is typically caused by calling an iterating implementation of a method.\nSuch implementations *do not* execute on the GPU, but very slowly on the CPU,\nand therefore should be avoided.\n\nIf you want to allow scalar iteration, use `allowscalar` or `@allowscalar`\nto enable scalar iteration globally or for the operations in question.") └ @ Main ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:39 solver = SplitBregman: Test Failed at /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:32 Expression: try #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:33 =# S = createLinearSolver(solver, arrayType(A), iterations = 100) #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:34 =# x_approx = Array(solve!(S, arrayType(b))) #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:35 =# #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:35 =# @info "Testing solver $(solver): $(x) ≈ $(x_approx)" #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:36 =# #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:36 =# @test x_approx ≈ x rtol = 0.1 #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:37 =# true catch e #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:39 =# #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:39 =# @error e #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:40 =# false end Stacktrace: [1] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:679 [inlined] [2] macro expansion @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:32 [inlined] [3] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:1793 [inlined] [4] testComplexLinearSolver(; arrayType::Type{JLArray}, elType::Type) @ Main ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:31 [ Info: Testing solver FISTA: ComplexF32[0.19463056f0 + 0.4517445f0im, 0.6611685f0 + 0.7286364f0im] ≈ ComplexF32[0.19462557f0 + 0.45182896f0im, 0.6611145f0 + 0.72854817f0im] [ Info: Testing solver OptISTA: ComplexF32[0.19463056f0 + 0.4517445f0im, 0.6611685f0 + 0.7286364f0im] ≈ ComplexF32[0.19462797f0 + 0.45179337f0im, 0.6611369f0 + 0.7285855f0im] [ Info: Testing solver POGM: ComplexF32[0.19463056f0 + 0.4517445f0im, 0.6611685f0 + 0.7286364f0im] ≈ ComplexF32[0.19462755f0 + 0.45179555f0im, 0.6611359f0 + 0.7285829f0im] [ Info: Testing solver Kaczmarz: ComplexF32[0.19463056f0 + 0.4517445f0im, 0.6611685f0 + 0.7286364f0im] ≈ ComplexF32[0.19463065f0 + 0.45174462f0im, 0.6611685f0 + 0.7286364f0im] [ Info: Testing solver CGNR: ComplexF32[0.19463056f0 + 0.4517445f0im, 0.6611685f0 + 0.7286364f0im] ≈ ComplexF32[0.19463077f0 + 0.45174536f0im, 0.6611692f0 + 0.72863704f0im] ┌ Error: ErrorException("Scalar indexing is disallowed.\nInvocation of getindex resulted in scalar indexing of a GPU array.\nThis is typically caused by calling an iterating implementation of a method.\nSuch implementations *do not* execute on the GPU, but very slowly on the CPU,\nand therefore should be avoided.\n\nIf you want to allow scalar iteration, use `allowscalar` or `@allowscalar`\nto enable scalar iteration globally or for the operations in question.") └ @ Main ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:61 solver = ADMM: Test Failed at /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:54 Expression: try #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:55 =# S = createLinearSolver(solver, nothing; AHA = arrayType(AHA), iterations = 100) #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:56 =# x_approx = Array(solve!(S, arrayType(b))) #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:57 =# #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:57 =# @info "Testing solver $(solver): $(x) ≈ $(x_approx)" #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:58 =# #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:58 =# @test x_approx ≈ x rtol = 0.1 #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:59 =# true catch e #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:61 =# #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:61 =# @error e #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:62 =# false end Stacktrace: [1] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:679 [inlined] [2] macro expansion @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:54 [inlined] [3] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:1793 [inlined] [4] testComplexLinearAHASolver(; arrayType::Type{JLArray}, elType::Type) @ Main ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:53 ┌ Error: ErrorException("Scalar indexing is disallowed.\nInvocation of getindex resulted in scalar indexing of a GPU array.\nThis is typically caused by calling an iterating implementation of a method.\nSuch implementations *do not* execute on the GPU, but very slowly on the CPU,\nand therefore should be avoided.\n\nIf you want to allow scalar iteration, use `allowscalar` or `@allowscalar`\nto enable scalar iteration globally or for the operations in question.") └ @ Main ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:61 solver = SplitBregman: Test Failed at /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:54 Expression: try #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:55 =# S = createLinearSolver(solver, nothing; AHA = arrayType(AHA), iterations = 100) #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:56 =# x_approx = Array(solve!(S, arrayType(b))) #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:57 =# #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:57 =# @info "Testing solver $(solver): $(x) ≈ $(x_approx)" #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:58 =# #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:58 =# @test x_approx ≈ x rtol = 0.1 #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:59 =# true catch e #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:61 =# #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:61 =# @error e #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:62 =# false end Stacktrace: [1] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:679 [inlined] [2] macro expansion @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:54 [inlined] [3] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:1793 [inlined] [4] testComplexLinearAHASolver(; arrayType::Type{JLArray}, elType::Type) @ Main ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:53 [ Info: Testing solver FISTA: ComplexF32[0.19463056f0 + 0.4517445f0im, 0.6611685f0 + 0.7286364f0im] ≈ ComplexF32[0.19462578f0 + 0.45182908f0im, 0.66111416f0 + 0.7285482f0im] [ Info: Testing solver OptISTA: ComplexF32[0.19463056f0 + 0.4517445f0im, 0.6611685f0 + 0.7286364f0im] ≈ ComplexF32[0.19462757f0 + 0.45179307f0im, 0.66113746f0 + 0.72858596f0im] [ Info: Testing solver POGM: ComplexF32[0.19463056f0 + 0.4517445f0im, 0.6611685f0 + 0.7286364f0im] ≈ ComplexF32[0.19462746f0 + 0.45179594f0im, 0.6611355f0 + 0.728583f0im] [ Info: Testing solver POGM w/o restart: relative error = 0.004481134173874375 [ Info: Testing solver POGM w/ gradient restart: relative error = 0.004481134173874314 [ Info: Testing solver POGM w/o restart and after re-scaling: relative error = 0.0023162374672481933 [ Info: Testing solver OptISTA w/o restart: relative error = 0.004481134173877721 [ Info: Testing solver OptISTA w/o restart and after re-scaling: relative error = 0.0023162374672521155 [ Info: Testing solver FISTA w/o restart: relative error = 0.004481134173874635 [ Info: Testing solver FISTA w/ gradient restart: relative error = 0.004481134173874418 [ Info: Testing solver FISTA w/o restart and after re-scaling: relative error = 0.0023162374672531733 General Convex Solver: Float32: Error During Test at /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:256 Got exception outside of a @test Scalar indexing is disallowed. Invocation of getindex resulted in scalar indexing of a GPU array. This is typically caused by calling an iterating implementation of a method. Such implementations *do not* execute on the GPU, but very slowly on the CPU, and therefore should be avoided. If you want to allow scalar iteration, use `allowscalar` or `@allowscalar` to enable scalar iteration globally or for the operations in question. Stacktrace: [1] error(s::String) @ Base ./error.jl:35 [2] errorscalar(op::String) @ GPUArraysCore ~/.julia/packages/GPUArraysCore/aNaXo/src/GPUArraysCore.jl:151 [3] _assertscalar(op::String, behavior::GPUArraysCore.ScalarIndexing) @ GPUArraysCore ~/.julia/packages/GPUArraysCore/aNaXo/src/GPUArraysCore.jl:124 [4] assertscalar(op::String) @ GPUArraysCore ~/.julia/packages/GPUArraysCore/aNaXo/src/GPUArraysCore.jl:112 [5] getindex @ ~/.julia/packages/GPUArrays/uiVyU/src/host/indexing.jl:50 [inlined] [6] _broadcast_getindex @ ./broadcast.jl:644 [inlined] [7] _getindex @ ./broadcast.jl:675 [inlined] [8] _getindex @ ./broadcast.jl:674 [inlined] [9] _broadcast_getindex @ ./broadcast.jl:650 [inlined] [10] getindex @ ./broadcast.jl:610 [inlined] [11] cpu_broadcast_kernel_linear @ ~/.julia/packages/KernelAbstractions/sWSE0/src/macros.jl:304 [inlined] [12] (::GPUArrays.var"#cpu_broadcast_kernel_linear#37")(__ctx__::KernelAbstractions.CompilerMetadata{KernelAbstractions.NDIteration.DynamicSize, KernelAbstractions.NDIteration.NoDynamicCheck, CartesianIndex{1}, CartesianIndices{1, Tuple{Base.OneTo{Int64}}}, KernelAbstractions.NDIteration.NDRange{1, KernelAbstractions.NDIteration.DynamicSize, KernelAbstractions.NDIteration.DynamicSize, CartesianIndices{1, Tuple{Base.OneTo{Int64}}}, CartesianIndices{1, Tuple{Base.OneTo{Int64}}}}}, dest::SubArray{ComplexF64, 1, Vector{ComplexF64}, Tuple{UnitRange{Int64}}, true}, bc::Base.Broadcast.Broadcasted{JLArrays.JLArrayStyle{1}, Tuple{Base.OneTo{Int64}}, typeof(*), Tuple{ComplexF64, Base.Broadcast.Extruded{JLArray{ComplexF64, 1}, Tuple{Bool}, Tuple{Int64}}}}) @ GPUArrays ./none:0 [13] __thread_run(tid::Int64, len::Int64, rem::Int64, obj::KernelAbstractions.Kernel{KernelAbstractions.CPU, KernelAbstractions.NDIteration.DynamicSize, KernelAbstractions.NDIteration.DynamicSize, GPUArrays.var"#cpu_broadcast_kernel_linear#37"}, ndrange::Tuple{Int64}, iterspace::KernelAbstractions.NDIteration.NDRange{1, KernelAbstractions.NDIteration.DynamicSize, KernelAbstractions.NDIteration.DynamicSize, CartesianIndices{1, Tuple{Base.OneTo{Int64}}}, CartesianIndices{1, Tuple{Base.OneTo{Int64}}}}, args::Tuple{SubArray{ComplexF64, 1, Vector{ComplexF64}, Tuple{UnitRange{Int64}}, true}, Base.Broadcast.Broadcasted{JLArrays.JLArrayStyle{1}, Tuple{Base.OneTo{Int64}}, typeof(*), Tuple{ComplexF64, Base.Broadcast.Extruded{JLArray{ComplexF64, 1}, Tuple{Bool}, Tuple{Int64}}}}}, dynamic::KernelAbstractions.NDIteration.NoDynamicCheck) @ KernelAbstractions ~/.julia/packages/KernelAbstractions/sWSE0/src/cpu.jl:144 [14] __run(obj::KernelAbstractions.Kernel{KernelAbstractions.CPU, KernelAbstractions.NDIteration.DynamicSize, KernelAbstractions.NDIteration.DynamicSize, GPUArrays.var"#cpu_broadcast_kernel_linear#37"}, ndrange::Tuple{Int64}, iterspace::KernelAbstractions.NDIteration.NDRange{1, KernelAbstractions.NDIteration.DynamicSize, KernelAbstractions.NDIteration.DynamicSize, CartesianIndices{1, Tuple{Base.OneTo{Int64}}}, CartesianIndices{1, Tuple{Base.OneTo{Int64}}}}, args::Tuple{SubArray{ComplexF64, 1, Vector{ComplexF64}, Tuple{UnitRange{Int64}}, true}, Base.Broadcast.Broadcasted{JLArrays.JLArrayStyle{1}, Tuple{Base.OneTo{Int64}}, typeof(*), Tuple{ComplexF64, Base.Broadcast.Extruded{JLArray{ComplexF64, 1}, Tuple{Bool}, Tuple{Int64}}}}}, dynamic::KernelAbstractions.NDIteration.NoDynamicCheck, static_threads::Bool) @ KernelAbstractions ~/.julia/packages/KernelAbstractions/sWSE0/src/cpu.jl:111 [15] (::KernelAbstractions.Kernel{KernelAbstractions.CPU, KernelAbstractions.NDIteration.DynamicSize, KernelAbstractions.NDIteration.DynamicSize, GPUArrays.var"#cpu_broadcast_kernel_linear#37"})(::SubArray{ComplexF64, 1, Vector{ComplexF64}, Tuple{UnitRange{Int64}}, true}, ::Vararg{Any}; ndrange::Tuple{Int64}, workgroupsize::Nothing) @ KernelAbstractions ~/.julia/packages/KernelAbstractions/sWSE0/src/cpu.jl:45 [16] _copyto! @ ~/.julia/packages/GPUArrays/uiVyU/src/host/broadcast.jl:71 [inlined] [17] materialize! @ ~/.julia/packages/GPUArrays/uiVyU/src/host/broadcast.jl:38 [inlined] [18] materialize! @ ./broadcast.jl:880 [inlined] [19] mulOpEye!(res::Vector{ComplexF64}, v::JLArray{ComplexF64, 1}, α::ComplexF64, β::ComplexF64, n_min::Int64) @ LinearOperators ~/.julia/packages/LinearOperators/ixrUQ/src/special-operators.jl:38 [20] #121 @ ~/.julia/packages/LinearOperators/ixrUQ/src/special-operators.jl:54 [inlined] [21] mul! @ ~/.julia/packages/LinearOperators/ixrUQ/src/operations.jl:29 [inlined] [22] mul! @ ~/.julia/packages/LinearOperators/ixrUQ/src/operations.jl:40 [inlined] [23] prod_op! @ ~/.julia/packages/LinearOperators/ixrUQ/src/operations.jl:130 [inlined] [24] #18 @ ~/.julia/packages/LinearOperators/ixrUQ/src/operations.jl:149 [inlined] [25] mul!(res::JLArray{ComplexF64, 1}, op::LinearOperator{ComplexF64, Int64, LinearOperators.var"#18#21"{AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Vector{ComplexF64}}, LinearOperators.var"#19#22"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, Vector{ComplexF64}}, LinearOperators.var"#20#23"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, Vector{ComplexF64}}, Vector{ComplexF64}}, v::JLArray{ComplexF64, 1}, α::ComplexF64, β::ComplexF64) @ LinearOperators ~/.julia/packages/LinearOperators/ixrUQ/src/operations.jl:29 [26] sum_prod! @ ~/.julia/packages/LinearOperators/ixrUQ/src/operations.jl:197 [inlined] [27] #30 @ ~/.julia/packages/LinearOperators/ixrUQ/src/operations.jl:207 [inlined] [28] mul!(res::JLArray{ComplexF64, 1}, op::LinearOperator{ComplexF64, Int64, LinearOperators.var"#30#33"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#5#8"{JLArray{ComplexF64, 2}}, LinearOperators.var"#6#9"{JLArray{ComplexF64, 2}}, LinearOperators.var"#7#10"{JLArray{ComplexF64, 2}}, Vector{ComplexF64}}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#18#21"{AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Vector{ComplexF64}}, LinearOperators.var"#19#22"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, Vector{ComplexF64}}, LinearOperators.var"#20#23"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, Vector{ComplexF64}}, Vector{ComplexF64}}}, LinearOperators.var"#31#34"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#5#8"{JLArray{ComplexF64, 2}}, LinearOperators.var"#6#9"{JLArray{ComplexF64, 2}}, LinearOperators.var"#7#10"{JLArray{ComplexF64, 2}}, Vector{ComplexF64}}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#18#21"{AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Vector{ComplexF64}}, LinearOperators.var"#19#22"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, Vector{ComplexF64}}, LinearOperators.var"#20#23"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, Vector{ComplexF64}}, Vector{ComplexF64}}}, LinearOperators.var"#32#35"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#5#8"{JLArray{ComplexF64, 2}}, LinearOperators.var"#6#9"{JLArray{ComplexF64, 2}}, LinearOperators.var"#7#10"{JLArray{ComplexF64, 2}}, Vector{ComplexF64}}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#18#21"{AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Vector{ComplexF64}}, LinearOperators.var"#19#22"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, Vector{ComplexF64}}, LinearOperators.var"#20#23"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, Vector{ComplexF64}}, Vector{ComplexF64}}}, Vector{ComplexF64}}, v::JLArray{ComplexF64, 1}, α::ComplexF64, β::ComplexF64) @ LinearOperators ~/.julia/packages/LinearOperators/ixrUQ/src/operations.jl:29 [29] mul! @ ~/.julia/packages/LinearOperators/ixrUQ/src/operations.jl:40 [inlined] [30] cg_iterator!(x::JLArray{ComplexF64, 1}, A::LinearOperator{ComplexF64, Int64, LinearOperators.var"#30#33"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#5#8"{JLArray{ComplexF64, 2}}, LinearOperators.var"#6#9"{JLArray{ComplexF64, 2}}, LinearOperators.var"#7#10"{JLArray{ComplexF64, 2}}, Vector{ComplexF64}}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#18#21"{AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Vector{ComplexF64}}, LinearOperators.var"#19#22"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, Vector{ComplexF64}}, LinearOperators.var"#20#23"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, Vector{ComplexF64}}, Vector{ComplexF64}}}, LinearOperators.var"#31#34"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#5#8"{JLArray{ComplexF64, 2}}, LinearOperators.var"#6#9"{JLArray{ComplexF64, 2}}, LinearOperators.var"#7#10"{JLArray{ComplexF64, 2}}, Vector{ComplexF64}}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#18#21"{AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Vector{ComplexF64}}, LinearOperators.var"#19#22"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, Vector{ComplexF64}}, LinearOperators.var"#20#23"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, Vector{ComplexF64}}, Vector{ComplexF64}}}, LinearOperators.var"#32#35"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#5#8"{JLArray{ComplexF64, 2}}, LinearOperators.var"#6#9"{JLArray{ComplexF64, 2}}, LinearOperators.var"#7#10"{JLArray{ComplexF64, 2}}, Vector{ComplexF64}}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#18#21"{AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Vector{ComplexF64}}, LinearOperators.var"#19#22"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, Vector{ComplexF64}}, LinearOperators.var"#20#23"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, Vector{ComplexF64}}, Vector{ComplexF64}}}, Vector{ComplexF64}}, b::JLArray{ComplexF64, 1}, Pl::IterativeSolvers.Identity; abstol::Float64, reltol::Float64, maxiter::Int64, statevars::IterativeSolvers.CGStateVariables{ComplexF64, JLArray{ComplexF64, 1}}, initially_zero::Bool) @ IterativeSolvers ~/.julia/packages/IterativeSolvers/bjiMt/src/cg.jl:137 [31] cg_iterator! @ ~/.julia/packages/IterativeSolvers/bjiMt/src/cg.jl:120 [inlined] [32] cg!(x::JLArray{ComplexF64, 1}, A::LinearOperator{ComplexF64, Int64, LinearOperators.var"#30#33"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#5#8"{JLArray{ComplexF64, 2}}, LinearOperators.var"#6#9"{JLArray{ComplexF64, 2}}, LinearOperators.var"#7#10"{JLArray{ComplexF64, 2}}, Vector{ComplexF64}}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#18#21"{AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Vector{ComplexF64}}, LinearOperators.var"#19#22"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, Vector{ComplexF64}}, LinearOperators.var"#20#23"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, Vector{ComplexF64}}, Vector{ComplexF64}}}, LinearOperators.var"#31#34"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#5#8"{JLArray{ComplexF64, 2}}, LinearOperators.var"#6#9"{JLArray{ComplexF64, 2}}, LinearOperators.var"#7#10"{JLArray{ComplexF64, 2}}, Vector{ComplexF64}}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#18#21"{AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Vector{ComplexF64}}, LinearOperators.var"#19#22"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, Vector{ComplexF64}}, LinearOperators.var"#20#23"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, Vector{ComplexF64}}, Vector{ComplexF64}}}, LinearOperators.var"#32#35"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#5#8"{JLArray{ComplexF64, 2}}, LinearOperators.var"#6#9"{JLArray{ComplexF64, 2}}, LinearOperators.var"#7#10"{JLArray{ComplexF64, 2}}, Vector{ComplexF64}}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#18#21"{AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Vector{ComplexF64}}, LinearOperators.var"#19#22"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, Vector{ComplexF64}}, LinearOperators.var"#20#23"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, Vector{ComplexF64}}, Vector{ComplexF64}}}, Vector{ComplexF64}}, b::JLArray{ComplexF64, 1}; abstol::Float64, reltol::Float64, maxiter::Int64, log::Bool, statevars::IterativeSolvers.CGStateVariables{ComplexF64, JLArray{ComplexF64, 1}}, verbose::Bool, Pl::IterativeSolvers.Identity, kwargs::@Kwargs{}) @ IterativeSolvers ~/.julia/packages/IterativeSolvers/bjiMt/src/cg.jl:224 [33] iterate(solver::ADMM{JLArray{ComplexF64, 2}, JLArray{ComplexF64, 2}, L1Regularization{Float32}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Any, IterativeSolvers.Identity}, state::RegularizedLeastSquares.ADMMState{Float64, Vector{Float64}, JLArray{ComplexF64, 1}}) @ RegularizedLeastSquares ~/.julia/packages/RegularizedLeastSquares/HOcqi/src/ADMM.jl:221 [34] iterate(solver::ADMM{JLArray{ComplexF64, 2}, JLArray{ComplexF64, 2}, L1Regularization{Float32}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Any, IterativeSolvers.Identity}) @ RegularizedLeastSquares ~/.julia/packages/RegularizedLeastSquares/HOcqi/src/RegularizedLeastSquares.jl:190 [35] iterate @ ./iterators.jl:206 [inlined] [36] iterate @ ./iterators.jl:205 [inlined] [37] solve!(solver::ADMM{JLArray{ComplexF64, 2}, JLArray{ComplexF64, 2}, L1Regularization{Float32}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Any, IterativeSolvers.Identity}, b::JLArray{ComplexF64, 1}; callbacks::Function, kwargs::@Kwargs{}) @ RegularizedLeastSquares ~/.julia/packages/RegularizedLeastSquares/HOcqi/src/RegularizedLeastSquares.jl:111 [38] solve!(solver::ADMM{JLArray{ComplexF64, 2}, JLArray{ComplexF64, 2}, L1Regularization{Float32}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Any, IterativeSolvers.Identity}, b::JLArray{ComplexF64, 1}) @ RegularizedLeastSquares ~/.julia/packages/RegularizedLeastSquares/HOcqi/src/RegularizedLeastSquares.jl:102 [39] testConvexLinearSolver(; arrayType::Type{JLArray}, elType::Type{Float32}) @ Main ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:92 [40] macro expansion @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:257 [inlined] [41] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:1704 [inlined] --- the above 2 lines are repeated 1 more time --- [44] macro expansion @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:243 [inlined] [45] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:1704 [inlined] [46] top-level scope @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:241 [47] include(fname::String) @ Main ./sysimg.jl:38 [48] macro expansion @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/runtests.jl:14 [inlined] [49] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:1704 [inlined] [50] top-level scope @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/runtests.jl:11 [51] include(fname::String) @ Main ./sysimg.jl:38 [52] top-level scope @ none:6 [53] eval @ ./boot.jl:430 [inlined] [54] exec_options(opts::Base.JLOptions) @ Base ./client.jl:296 [ Info: Testing solver CGNR: [0.6611685583355441, 0.7286364388306961] ≈ [0.6611685583355467, 0.7286364388306988] ┌ Error: ErrorException("Scalar indexing is disallowed.\nInvocation of getindex resulted in scalar indexing of a GPU array.\nThis is typically caused by calling an iterating implementation of a method.\nSuch implementations *do not* execute on the GPU, but very slowly on the CPU,\nand therefore should be avoided.\n\nIf you want to allow scalar iteration, use `allowscalar` or `@allowscalar`\nto enable scalar iteration globally or for the operations in question.") └ @ Main ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:18 solver = ADMM: Test Failed at /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:11 Expression: try #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:12 =# S = createLinearSolver(solver, arrayType(A), iterations = 200) #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:13 =# x_approx = Array(solve!(S, arrayType(b))) #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:14 =# #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:14 =# @info "Testing solver $(solver): $(x) ≈ $(x_approx)" #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:15 =# #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:15 =# @test x_approx ≈ x rtol = 0.1 #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:16 =# true catch e #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:18 =# #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:18 =# @error e #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:19 =# false end Stacktrace: [1] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:679 [inlined] [2] macro expansion @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:11 [inlined] [3] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:1793 [inlined] [4] testRealLinearSolver(; arrayType::Type{JLArray}, elType::Type) @ Main ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:10 ┌ Error: ErrorException("Scalar indexing is disallowed.\nInvocation of getindex resulted in scalar indexing of a GPU array.\nThis is typically caused by calling an iterating implementation of a method.\nSuch implementations *do not* execute on the GPU, but very slowly on the CPU,\nand therefore should be avoided.\n\nIf you want to allow scalar iteration, use `allowscalar` or `@allowscalar`\nto enable scalar iteration globally or for the operations in question.") └ @ Main ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:18 solver = SplitBregman: Test Failed at /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:11 Expression: try #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:12 =# S = createLinearSolver(solver, arrayType(A), iterations = 200) #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:13 =# x_approx = Array(solve!(S, arrayType(b))) #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:14 =# #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:14 =# @info "Testing solver $(solver): $(x) ≈ $(x_approx)" #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:15 =# #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:15 =# @test x_approx ≈ x rtol = 0.1 #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:16 =# true catch e #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:18 =# #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:18 =# @error e #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:19 =# false end Stacktrace: [1] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:679 [inlined] [2] macro expansion @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:11 [inlined] [3] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:1793 [inlined] [4] testRealLinearSolver(; arrayType::Type{JLArray}, elType::Type) @ Main ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:10 [ Info: Testing solver FISTA: [0.6611685583355441, 0.7286364388306961] ≈ [0.6610373767271631, 0.7290920106777302] [ Info: Testing solver OptISTA: [0.6611685583355441, 0.7286364388306961] ≈ [0.6610811838624543, 0.7289398758031532] [ Info: Testing solver POGM: [0.6611685583355441, 0.7286364388306961] ≈ [0.6610782228067102, 0.7289501590558977] [ Info: Testing solver Kaczmarz: [0.6611685583355441, 0.7286364388306961] ≈ [0.6611685583355442, 0.7286364388306957] [ Info: Testing solver CGNR: ComplexF64[0.26755021483368013 + 0.8104947638539546im, 0.11848853125656122 + 0.8532722765149262im] ≈ ComplexF64[0.26755021483368036 + 0.8104947638539561im, 0.11848853125656147 + 0.853272276514927im] ┌ Error: ErrorException("Scalar indexing is disallowed.\nInvocation of getindex resulted in scalar indexing of a GPU array.\nThis is typically caused by calling an iterating implementation of a method.\nSuch implementations *do not* execute on the GPU, but very slowly on the CPU,\nand therefore should be avoided.\n\nIf you want to allow scalar iteration, use `allowscalar` or `@allowscalar`\nto enable scalar iteration globally or for the operations in question.") └ @ Main ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:39 solver = ADMM: Test Failed at /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:32 Expression: try #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:33 =# S = createLinearSolver(solver, arrayType(A), iterations = 100) #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:34 =# x_approx = Array(solve!(S, arrayType(b))) #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:35 =# #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:35 =# @info "Testing solver $(solver): $(x) ≈ $(x_approx)" #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:36 =# #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:36 =# @test x_approx ≈ x rtol = 0.1 #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:37 =# true catch e #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:39 =# #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:39 =# @error e #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:40 =# false end Stacktrace: [1] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:679 [inlined] [2] macro expansion @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:32 [inlined] [3] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:1793 [inlined] [4] testComplexLinearSolver(; arrayType::Type{JLArray}, elType::Type) @ Main ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:31 ┌ Error: ErrorException("Scalar indexing is disallowed.\nInvocation of getindex resulted in scalar indexing of a GPU array.\nThis is typically caused by calling an iterating implementation of a method.\nSuch implementations *do not* execute on the GPU, but very slowly on the CPU,\nand therefore should be avoided.\n\nIf you want to allow scalar iteration, use `allowscalar` or `@allowscalar`\nto enable scalar iteration globally or for the operations in question.") └ @ Main ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:39 solver = SplitBregman: Test Failed at /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:32 Expression: try #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:33 =# S = createLinearSolver(solver, arrayType(A), iterations = 100) #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:34 =# x_approx = Array(solve!(S, arrayType(b))) #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:35 =# #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:35 =# @info "Testing solver $(solver): $(x) ≈ $(x_approx)" #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:36 =# #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:36 =# @test x_approx ≈ x rtol = 0.1 #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:37 =# true catch e #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:39 =# #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:39 =# @error e #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:40 =# false end Stacktrace: [1] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:679 [inlined] [2] macro expansion @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:32 [inlined] [3] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:1793 [inlined] [4] testComplexLinearSolver(; arrayType::Type{JLArray}, elType::Type) @ Main ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:31 [ Info: Testing solver FISTA: ComplexF64[0.26755021483368013 + 0.8104947638539546im, 0.11848853125656122 + 0.8532722765149262im] ≈ ComplexF64[0.26755004689208345 + 0.8104949297163327im, 0.11848868958974186 + 0.8532718934315499im] [ Info: Testing solver OptISTA: ComplexF64[0.26755021483368013 + 0.8104947638539546im, 0.11848853125656122 + 0.8532722765149262im] ≈ ComplexF64[0.2675505586034005 + 0.8104944243393031im, 0.11848820715453628 + 0.8532730606710188im] [ Info: Testing solver POGM: ComplexF64[0.26755021483368013 + 0.8104947638539546im, 0.11848853125656122 + 0.8532722765149262im] ≈ ComplexF64[0.26755053855447447 + 0.8104944441395585im, 0.11848822605625063 + 0.8532730149382917im] [ Info: Testing solver Kaczmarz: ComplexF64[0.26755021483368013 + 0.8104947638539546im, 0.11848853125656122 + 0.8532722765149262im] ≈ ComplexF64[0.26755021483368024 + 0.8104947638539546im, 0.1184885312565611 + 0.8532722765149262im] [ Info: Testing solver CGNR: ComplexF64[0.26755021483368013 + 0.8104947638539546im, 0.11848853125656122 + 0.8532722765149262im] ≈ ComplexF64[0.2675502148336803 + 0.8104947638539559im, 0.11848853125656147 + 0.8532722765149271im] ┌ Error: ErrorException("Scalar indexing is disallowed.\nInvocation of getindex resulted in scalar indexing of a GPU array.\nThis is typically caused by calling an iterating implementation of a method.\nSuch implementations *do not* execute on the GPU, but very slowly on the CPU,\nand therefore should be avoided.\n\nIf you want to allow scalar iteration, use `allowscalar` or `@allowscalar`\nto enable scalar iteration globally or for the operations in question.") └ @ Main ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:61 solver = ADMM: Test Failed at /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:54 Expression: try #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:55 =# S = createLinearSolver(solver, nothing; AHA = arrayType(AHA), iterations = 100) #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:56 =# x_approx = Array(solve!(S, arrayType(b))) #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:57 =# #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:57 =# @info "Testing solver $(solver): $(x) ≈ $(x_approx)" #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:58 =# #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:58 =# @test x_approx ≈ x rtol = 0.1 #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:59 =# true catch e #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:61 =# #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:61 =# @error e #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:62 =# false end Stacktrace: [1] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:679 [inlined] [2] macro expansion @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:54 [inlined] [3] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:1793 [inlined] [4] testComplexLinearAHASolver(; arrayType::Type{JLArray}, elType::Type) @ Main ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:53 ┌ Error: ErrorException("Scalar indexing is disallowed.\nInvocation of getindex resulted in scalar indexing of a GPU array.\nThis is typically caused by calling an iterating implementation of a method.\nSuch implementations *do not* execute on the GPU, but very slowly on the CPU,\nand therefore should be avoided.\n\nIf you want to allow scalar iteration, use `allowscalar` or `@allowscalar`\nto enable scalar iteration globally or for the operations in question.") └ @ Main ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:61 solver = SplitBregman: Test Failed at /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:54 Expression: try #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:55 =# S = createLinearSolver(solver, nothing; AHA = arrayType(AHA), iterations = 100) #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:56 =# x_approx = Array(solve!(S, arrayType(b))) #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:57 =# #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:57 =# @info "Testing solver $(solver): $(x) ≈ $(x_approx)" #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:58 =# #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:58 =# @test x_approx ≈ x rtol = 0.1 #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:59 =# true catch e #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:61 =# #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:61 =# @error e #= /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:62 =# false end Stacktrace: [1] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:679 [inlined] [2] macro expansion @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:54 [inlined] [3] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:1793 [inlined] [4] testComplexLinearAHASolver(; arrayType::Type{JLArray}, elType::Type) @ Main ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:53 [ Info: Testing solver FISTA: ComplexF64[0.26755021483368013 + 0.8104947638539546im, 0.11848853125656122 + 0.8532722765149262im] ≈ ComplexF64[0.2675500468920834 + 0.8104949297163324im, 0.11848868958974203 + 0.8532718934315505im] [ Info: Testing solver OptISTA: ComplexF64[0.26755021483368013 + 0.8104947638539546im, 0.11848853125656122 + 0.8532722765149262im] ≈ ComplexF64[0.26755055860340043 + 0.8104944243393021im, 0.11848820715453674 + 0.853273060671021im] [ Info: Testing solver POGM: ComplexF64[0.26755021483368013 + 0.8104947638539546im, 0.11848853125656122 + 0.8532722765149262im] ≈ ComplexF64[0.26755053855447414 + 0.8104944441395585im, 0.11848822605625073 + 0.8532730149382928im] [ Info: Testing solver POGM w/o restart: relative error = 0.0044811339610340535 [ Info: Testing solver POGM w/ gradient restart: relative error = 0.004481133961033923 [ Info: Testing solver POGM w/o restart and after re-scaling: relative error = 0.002316237266855088 [ Info: Testing solver OptISTA w/o restart: relative error = 0.004481133961035683 [ Info: Testing solver OptISTA w/o restart and after re-scaling: relative error = 0.0023162372668581476 [ Info: Testing solver FISTA w/o restart: relative error = 0.004481133961034174 [ Info: Testing solver FISTA w/ gradient restart: relative error = 0.00448113396103405 [ Info: Testing solver FISTA w/o restart and after re-scaling: relative error = 0.0023162372668596317 General Convex Solver: Float64: Error During Test at /home/pkgeval/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:256 Got exception outside of a @test Scalar indexing is disallowed. Invocation of getindex resulted in scalar indexing of a GPU array. This is typically caused by calling an iterating implementation of a method. Such implementations *do not* execute on the GPU, but very slowly on the CPU, and therefore should be avoided. If you want to allow scalar iteration, use `allowscalar` or `@allowscalar` to enable scalar iteration globally or for the operations in question. Stacktrace: [1] error(s::String) @ Base ./error.jl:35 [2] errorscalar(op::String) @ GPUArraysCore ~/.julia/packages/GPUArraysCore/aNaXo/src/GPUArraysCore.jl:151 [3] _assertscalar(op::String, behavior::GPUArraysCore.ScalarIndexing) @ GPUArraysCore ~/.julia/packages/GPUArraysCore/aNaXo/src/GPUArraysCore.jl:124 [4] assertscalar(op::String) @ GPUArraysCore ~/.julia/packages/GPUArraysCore/aNaXo/src/GPUArraysCore.jl:112 [5] getindex @ ~/.julia/packages/GPUArrays/uiVyU/src/host/indexing.jl:50 [inlined] [6] _broadcast_getindex @ ./broadcast.jl:644 [inlined] [7] _getindex @ ./broadcast.jl:675 [inlined] [8] _getindex @ ./broadcast.jl:674 [inlined] [9] _broadcast_getindex @ ./broadcast.jl:650 [inlined] [10] getindex @ ./broadcast.jl:610 [inlined] [11] cpu_broadcast_kernel_linear @ ~/.julia/packages/KernelAbstractions/sWSE0/src/macros.jl:304 [inlined] [12] (::GPUArrays.var"#cpu_broadcast_kernel_linear#37")(__ctx__::KernelAbstractions.CompilerMetadata{KernelAbstractions.NDIteration.DynamicSize, KernelAbstractions.NDIteration.NoDynamicCheck, CartesianIndex{1}, CartesianIndices{1, Tuple{Base.OneTo{Int64}}}, KernelAbstractions.NDIteration.NDRange{1, KernelAbstractions.NDIteration.DynamicSize, KernelAbstractions.NDIteration.DynamicSize, CartesianIndices{1, Tuple{Base.OneTo{Int64}}}, CartesianIndices{1, Tuple{Base.OneTo{Int64}}}}}, dest::SubArray{ComplexF64, 1, Vector{ComplexF64}, Tuple{UnitRange{Int64}}, true}, bc::Base.Broadcast.Broadcasted{JLArrays.JLArrayStyle{1}, Tuple{Base.OneTo{Int64}}, typeof(*), Tuple{ComplexF64, Base.Broadcast.Extruded{JLArray{ComplexF64, 1}, Tuple{Bool}, Tuple{Int64}}}}) @ GPUArrays ./none:0 [13] __thread_run(tid::Int64, len::Int64, rem::Int64, obj::KernelAbstractions.Kernel{KernelAbstractions.CPU, KernelAbstractions.NDIteration.DynamicSize, KernelAbstractions.NDIteration.DynamicSize, GPUArrays.var"#cpu_broadcast_kernel_linear#37"}, ndrange::Tuple{Int64}, iterspace::KernelAbstractions.NDIteration.NDRange{1, KernelAbstractions.NDIteration.DynamicSize, KernelAbstractions.NDIteration.DynamicSize, CartesianIndices{1, Tuple{Base.OneTo{Int64}}}, CartesianIndices{1, Tuple{Base.OneTo{Int64}}}}, args::Tuple{SubArray{ComplexF64, 1, Vector{ComplexF64}, Tuple{UnitRange{Int64}}, true}, Base.Broadcast.Broadcasted{JLArrays.JLArrayStyle{1}, Tuple{Base.OneTo{Int64}}, typeof(*), Tuple{ComplexF64, Base.Broadcast.Extruded{JLArray{ComplexF64, 1}, Tuple{Bool}, Tuple{Int64}}}}}, dynamic::KernelAbstractions.NDIteration.NoDynamicCheck) @ KernelAbstractions ~/.julia/packages/KernelAbstractions/sWSE0/src/cpu.jl:144 [14] __run(obj::KernelAbstractions.Kernel{KernelAbstractions.CPU, KernelAbstractions.NDIteration.DynamicSize, KernelAbstractions.NDIteration.DynamicSize, GPUArrays.var"#cpu_broadcast_kernel_linear#37"}, ndrange::Tuple{Int64}, iterspace::KernelAbstractions.NDIteration.NDRange{1, KernelAbstractions.NDIteration.DynamicSize, KernelAbstractions.NDIteration.DynamicSize, CartesianIndices{1, Tuple{Base.OneTo{Int64}}}, CartesianIndices{1, Tuple{Base.OneTo{Int64}}}}, args::Tuple{SubArray{ComplexF64, 1, Vector{ComplexF64}, Tuple{UnitRange{Int64}}, true}, Base.Broadcast.Broadcasted{JLArrays.JLArrayStyle{1}, Tuple{Base.OneTo{Int64}}, typeof(*), Tuple{ComplexF64, Base.Broadcast.Extruded{JLArray{ComplexF64, 1}, Tuple{Bool}, Tuple{Int64}}}}}, dynamic::KernelAbstractions.NDIteration.NoDynamicCheck, static_threads::Bool) @ KernelAbstractions ~/.julia/packages/KernelAbstractions/sWSE0/src/cpu.jl:111 [15] (::KernelAbstractions.Kernel{KernelAbstractions.CPU, KernelAbstractions.NDIteration.DynamicSize, KernelAbstractions.NDIteration.DynamicSize, GPUArrays.var"#cpu_broadcast_kernel_linear#37"})(::SubArray{ComplexF64, 1, Vector{ComplexF64}, Tuple{UnitRange{Int64}}, true}, ::Vararg{Any}; ndrange::Tuple{Int64}, workgroupsize::Nothing) @ KernelAbstractions ~/.julia/packages/KernelAbstractions/sWSE0/src/cpu.jl:45 [16] _copyto! @ ~/.julia/packages/GPUArrays/uiVyU/src/host/broadcast.jl:71 [inlined] [17] materialize! @ ~/.julia/packages/GPUArrays/uiVyU/src/host/broadcast.jl:38 [inlined] [18] materialize! @ ./broadcast.jl:880 [inlined] [19] mulOpEye!(res::Vector{ComplexF64}, v::JLArray{ComplexF64, 1}, α::ComplexF64, β::ComplexF64, n_min::Int64) @ LinearOperators ~/.julia/packages/LinearOperators/ixrUQ/src/special-operators.jl:38 [20] #121 @ ~/.julia/packages/LinearOperators/ixrUQ/src/special-operators.jl:54 [inlined] [21] mul! @ ~/.julia/packages/LinearOperators/ixrUQ/src/operations.jl:29 [inlined] [22] mul! @ ~/.julia/packages/LinearOperators/ixrUQ/src/operations.jl:40 [inlined] [23] prod_op! @ ~/.julia/packages/LinearOperators/ixrUQ/src/operations.jl:130 [inlined] [24] #18 @ ~/.julia/packages/LinearOperators/ixrUQ/src/operations.jl:149 [inlined] [25] mul!(res::JLArray{ComplexF64, 1}, op::LinearOperator{ComplexF64, Int64, LinearOperators.var"#18#21"{AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Vector{ComplexF64}}, LinearOperators.var"#19#22"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, Vector{ComplexF64}}, LinearOperators.var"#20#23"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, Vector{ComplexF64}}, Vector{ComplexF64}}, v::JLArray{ComplexF64, 1}, α::ComplexF64, β::ComplexF64) @ LinearOperators ~/.julia/packages/LinearOperators/ixrUQ/src/operations.jl:29 [26] sum_prod! @ ~/.julia/packages/LinearOperators/ixrUQ/src/operations.jl:197 [inlined] [27] #30 @ ~/.julia/packages/LinearOperators/ixrUQ/src/operations.jl:207 [inlined] [28] mul!(res::JLArray{ComplexF64, 1}, op::LinearOperator{ComplexF64, Int64, LinearOperators.var"#30#33"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#5#8"{JLArray{ComplexF64, 2}}, LinearOperators.var"#6#9"{JLArray{ComplexF64, 2}}, LinearOperators.var"#7#10"{JLArray{ComplexF64, 2}}, Vector{ComplexF64}}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#18#21"{AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Vector{ComplexF64}}, LinearOperators.var"#19#22"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, Vector{ComplexF64}}, LinearOperators.var"#20#23"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, Vector{ComplexF64}}, Vector{ComplexF64}}}, LinearOperators.var"#31#34"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#5#8"{JLArray{ComplexF64, 2}}, LinearOperators.var"#6#9"{JLArray{ComplexF64, 2}}, LinearOperators.var"#7#10"{JLArray{ComplexF64, 2}}, Vector{ComplexF64}}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#18#21"{AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Vector{ComplexF64}}, LinearOperators.var"#19#22"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, Vector{ComplexF64}}, LinearOperators.var"#20#23"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, Vector{ComplexF64}}, Vector{ComplexF64}}}, LinearOperators.var"#32#35"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#5#8"{JLArray{ComplexF64, 2}}, LinearOperators.var"#6#9"{JLArray{ComplexF64, 2}}, LinearOperators.var"#7#10"{JLArray{ComplexF64, 2}}, Vector{ComplexF64}}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#18#21"{AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Vector{ComplexF64}}, LinearOperators.var"#19#22"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, Vector{ComplexF64}}, LinearOperators.var"#20#23"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, Vector{ComplexF64}}, Vector{ComplexF64}}}, Vector{ComplexF64}}, v::JLArray{ComplexF64, 1}, α::ComplexF64, β::ComplexF64) @ LinearOperators ~/.julia/packages/LinearOperators/ixrUQ/src/operations.jl:29 [29] mul! @ ~/.julia/packages/LinearOperators/ixrUQ/src/operations.jl:40 [inlined] [30] cg_iterator!(x::JLArray{ComplexF64, 1}, A::LinearOperator{ComplexF64, Int64, LinearOperators.var"#30#33"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#5#8"{JLArray{ComplexF64, 2}}, LinearOperators.var"#6#9"{JLArray{ComplexF64, 2}}, LinearOperators.var"#7#10"{JLArray{ComplexF64, 2}}, Vector{ComplexF64}}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#18#21"{AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Vector{ComplexF64}}, LinearOperators.var"#19#22"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, Vector{ComplexF64}}, LinearOperators.var"#20#23"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, Vector{ComplexF64}}, Vector{ComplexF64}}}, LinearOperators.var"#31#34"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#5#8"{JLArray{ComplexF64, 2}}, LinearOperators.var"#6#9"{JLArray{ComplexF64, 2}}, LinearOperators.var"#7#10"{JLArray{ComplexF64, 2}}, Vector{ComplexF64}}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#18#21"{AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, 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LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, Vector{ComplexF64}}, Vector{ComplexF64}}}, Vector{ComplexF64}}, b::JLArray{ComplexF64, 1}, Pl::IterativeSolvers.Identity; abstol::Float64, reltol::Float64, maxiter::Int64, statevars::IterativeSolvers.CGStateVariables{ComplexF64, JLArray{ComplexF64, 1}}, initially_zero::Bool) @ IterativeSolvers ~/.julia/packages/IterativeSolvers/bjiMt/src/cg.jl:137 [31] cg_iterator! @ ~/.julia/packages/IterativeSolvers/bjiMt/src/cg.jl:120 [inlined] [32] cg!(x::JLArray{ComplexF64, 1}, A::LinearOperator{ComplexF64, Int64, LinearOperators.var"#30#33"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#5#8"{JLArray{ComplexF64, 2}}, LinearOperators.var"#6#9"{JLArray{ComplexF64, 2}}, LinearOperators.var"#7#10"{JLArray{ComplexF64, 2}}, Vector{ComplexF64}}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#18#21"{AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Vector{ComplexF64}}, LinearOperators.var"#19#22"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, Vector{ComplexF64}}, LinearOperators.var"#20#23"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, Vector{ComplexF64}}, Vector{ComplexF64}}}, LinearOperators.var"#31#34"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#5#8"{JLArray{ComplexF64, 2}}, LinearOperators.var"#6#9"{JLArray{ComplexF64, 2}}, LinearOperators.var"#7#10"{JLArray{ComplexF64, 2}}, Vector{ComplexF64}}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#18#21"{AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Vector{ComplexF64}}, LinearOperators.var"#19#22"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, 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Vector{ComplexF64}}}, LinearOperators.var"#32#35"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#5#8"{JLArray{ComplexF64, 2}}, LinearOperators.var"#6#9"{JLArray{ComplexF64, 2}}, LinearOperators.var"#7#10"{JLArray{ComplexF64, 2}}, Vector{ComplexF64}}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#18#21"{AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, 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LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, Vector{ComplexF64}}, LinearOperators.var"#20#23"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, AdjointLinearOperator{ComplexF64, LinearOperator{ComplexF64, Int64, LinearOperators.var"#24#27"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#25#28"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, LinearOperators.var"#26#29"{LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Float64}, Vector{ComplexF64}}}, Vector{ComplexF64}}, Vector{ComplexF64}}}, Vector{ComplexF64}}, b::JLArray{ComplexF64, 1}; abstol::Float64, reltol::Float64, maxiter::Int64, log::Bool, statevars::IterativeSolvers.CGStateVariables{ComplexF64, JLArray{ComplexF64, 1}}, verbose::Bool, Pl::IterativeSolvers.Identity, kwargs::@Kwargs{}) @ IterativeSolvers ~/.julia/packages/IterativeSolvers/bjiMt/src/cg.jl:224 [33] iterate(solver::ADMM{JLArray{ComplexF64, 2}, JLArray{ComplexF64, 2}, L1Regularization{Float64}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Any, IterativeSolvers.Identity}, state::RegularizedLeastSquares.ADMMState{Float64, Vector{Float64}, JLArray{ComplexF64, 1}}) @ RegularizedLeastSquares ~/.julia/packages/RegularizedLeastSquares/HOcqi/src/ADMM.jl:221 [34] iterate(solver::ADMM{JLArray{ComplexF64, 2}, JLArray{ComplexF64, 2}, L1Regularization{Float64}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Any, IterativeSolvers.Identity}) @ RegularizedLeastSquares ~/.julia/packages/RegularizedLeastSquares/HOcqi/src/RegularizedLeastSquares.jl:190 [35] iterate @ ./iterators.jl:206 [inlined] [36] iterate @ ./iterators.jl:205 [inlined] [37] solve!(solver::ADMM{JLArray{ComplexF64, 2}, JLArray{ComplexF64, 2}, L1Regularization{Float64}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Any, IterativeSolvers.Identity}, b::JLArray{ComplexF64, 1}; callbacks::Function, kwargs::@Kwargs{}) @ RegularizedLeastSquares ~/.julia/packages/RegularizedLeastSquares/HOcqi/src/RegularizedLeastSquares.jl:111 [38] solve!(solver::ADMM{JLArray{ComplexF64, 2}, JLArray{ComplexF64, 2}, L1Regularization{Float64}, LinearOperator{ComplexF64, Int64, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, LinearOperators.var"#121#122"{Int64}, Vector{ComplexF64}}, Any, IterativeSolvers.Identity}, b::JLArray{ComplexF64, 1}) @ RegularizedLeastSquares ~/.julia/packages/RegularizedLeastSquares/HOcqi/src/RegularizedLeastSquares.jl:102 [39] testConvexLinearSolver(; arrayType::Type{JLArray}, elType::Type{Float64}) @ Main ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:92 [40] macro expansion @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:257 [inlined] [41] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:1704 [inlined] --- the above 2 lines are repeated 1 more time --- [44] macro expansion @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:243 [inlined] [45] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:1704 [inlined] [46] top-level scope @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/testSolvers.jl:241 [47] include(fname::String) @ Main ./sysimg.jl:38 [48] macro expansion @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/runtests.jl:14 [inlined] [49] macro expansion @ /opt/julia/share/julia/stdlib/v1.11/Test/src/Test.jl:1704 [inlined] [50] top-level scope @ ~/.julia/packages/RegularizedLeastSquares/HOcqi/test/runtests.jl:11 [51] include(fname::String) @ Main ./sysimg.jl:38 [52] top-level scope @ none:6 [53] eval @ ./boot.jl:430 [inlined] [54] exec_options(opts::Base.JLOptions) @ Base ./client.jl:296 Outer ADMM Iteration #0 conjugated gradients: 1 1.67e-02 2 8.53e-08 rᵏ[1]/ɛᵖʳⁱ[1] = 0.0 sᵏ[1]/ɛᵈᵘᵃ[1] = Inf Δ[1]/Δᵒˡᵈ[1] = 0.0 new ρ[1] = 0.1 Outer ADMM Iteration #1 conjugated gradients: 1 5.17e-03 2 7.92e-09 rᵏ[1]/ɛᵖʳⁱ[1] = 0.0 sᵏ[1]/ɛᵈᵘᵃ[1] = Inf Δ[1]/Δᵒˡᵈ[1] = 0.12021453 new ρ[1] = 0.1 Outer ADMM Iteration #2 conjugated gradients: 1 2.04e-03 2 5.82e-11 rᵏ[1]/ɛᵖʳⁱ[1] = 0.0 sᵏ[1]/ɛᵈᵘᵃ[1] = Inf Δ[1]/Δᵒˡᵈ[1] = 0.27967867 new ρ[1] = 0.1 iter = 1; λ = 0.42973953; abs(λ/λᵒˡᵈ - 1) = 1.0