Package evaluation to load SawyerEliassenSolver on Julia 1.14.0-DEV.2309 (6e1a27e459*) started at 2026-06-06T17:05:12.261 ################################################################################ # Set-up # Set-up completed after 0.16s ################################################################################ # Installation # Installing SawyerEliassenSolver... Resolving package versions... Installed MicrosoftMPI_jll ────── v10.1.4+3 (no artifacts on this platform) Installed libaec_jll ──────────── v1.1.7+0 Installed MKL_jll ─────────────── v2025.2.0+0 Installed aws_c_cal_jll ───────── v0.9.13+0 Installed aws_c_common_jll ────── v0.12.6+0 Installed Statistics ──────────── v1.11.1 Installed oneTBB_jll ──────────── v2022.3.0+0 Installed MPICH_jll ───────────── v5.0.1+0 Installed MPIABI_jll ──────────── v0.1.5+0 Installed Compat ──────────────── v4.18.1 Installed s2n_tls_jll ─────────── v1.7.3+0 Installed IntelOpenMP_jll ─────── v2025.2.0+0 Installed dlfcn_win32_jll ─────── v1.4.2+0 (no artifacts on this platform) Installed Xorg_libpciaccess_jll ─ v0.19.0+0 Installed AbstractFFTs ────────── v1.5.0 Installed aws_c_s3_jll ────────── v0.11.5+0 Installed mpif_jll ────────────── v0.1.7+0 Installed Requires ────────────── v1.3.1 Installed HDF5_jll ────────────── v2.1.2+0 Installed aws_c_io_jll ────────── v0.26.3+0 Installed aws_c_sdkutils_jll ──── v0.2.4+1 Installed OpenMPI_jll ─────────── v5.0.11+0 Installed SawyerEliassenSolver ── v1.0.0 Installed Hwloc_jll ───────────── v2.13.0+1 Installed aws_checksums_jll ───── v0.2.10+0 Installed Reexport ────────────── v1.2.2 Installed XML2_jll ────────────── v2.13.9+0 Installed MPIPreferences ──────── v0.1.12 Installed FFTW_jll ────────────── v3.3.12+0 Installed aws_c_http_jll ──────── v0.10.13+0 Installed Libiconv_jll ────────── v1.18.0+0 Installed Preferences ─────────── v1.5.2 Installed FFTW ────────────────── v1.10.0 Installed JLLWrappers ─────────── v1.8.0 Installed HDF5 ────────────────── v0.17.3 Installed aws_c_compression_jll ─ v0.3.2+0 Installed DocStringExtensions ─── v0.9.5 Installed MPItrampoline_jll ───── v5.5.6+0 Installed aws_c_auth_jll ──────── v0.9.6+0 Installing 18 artifacts Installed artifact aws_c_cal 1.2 MiB Installed artifact libaec 50.4 KiB Installed artifact aws_c_compression 13.4 KiB Installed artifact aws_c_io 181.7 KiB Installed artifact aws_c_sdkutils 54.9 KiB Installed artifact aws_c_auth 130.3 KiB Installed artifact aws_c_common 285.2 KiB Installed artifact aws_checksums 87.0 KiB Installed artifact Hwloc 3.5 MiB Installed artifact aws_c_s3 143.0 KiB Installed artifact Xorg_libpciaccess 26.2 KiB Installed artifact XML2 2.5 MiB Installed artifact HDF5 6.1 MiB Installed artifact aws_c_http 387.4 KiB Installed artifact s2n_tls 1.8 MiB Installed artifact Libiconv 1.9 MiB Installed artifact FFTW 2.2 MiB Installed artifact MPICH 8.8 MiB Updating `~/.julia/environments/v1.14/Project.toml` [4160a140] + SawyerEliassenSolver v1.0.0 Updating `~/.julia/environments/v1.14/Manifest.toml` [621f4979] + AbstractFFTs v1.5.0 [34da2185] + Compat v4.18.1 [ffbed154] + DocStringExtensions v0.9.5 [7a1cc6ca] + FFTW v1.10.0 [f67ccb44] + HDF5 v0.17.3 [692b3bcd] + JLLWrappers v1.8.0 [3da0fdf6] + MPIPreferences v0.1.12 [21216c6a] + Preferences v1.5.2 [189a3867] + Reexport v1.2.2 [ae029012] + Requires v1.3.1 [4160a140] + SawyerEliassenSolver v1.0.0 [10745b16] + Statistics v1.11.1 [f5851436] + FFTW_jll v3.3.12+0 [0234f1f7] + HDF5_jll v2.1.2+0 [e33a78d0] + Hwloc_jll v2.13.0+1 [1d5cc7b8] + IntelOpenMP_jll v2025.2.0+0 [94ce4f54] + Libiconv_jll v1.18.0+0 [856f044c] + MKL_jll v2025.2.0+0 [b5ada748] + MPIABI_jll v0.1.5+0 [7cb0a576] + MPICH_jll v5.0.1+0 [f1f71cc9] + MPItrampoline_jll v5.5.6+0 [9237b28f] + MicrosoftMPI_jll v10.1.4+3 [fe0851c0] + OpenMPI_jll v5.0.11+0 ⌅ [02c8fc9c] + XML2_jll v2.13.9+0 [a65dc6b1] + Xorg_libpciaccess_jll v0.19.0+0 ⌅ [2b3700d1] + aws_c_auth_jll v0.9.6+0 [70f11efc] + aws_c_cal_jll v0.9.13+0 [73048d1d] + aws_c_common_jll v0.12.6+0 [73a04cd5] + aws_c_compression_jll v0.3.2+0 [3254fc65] + aws_c_http_jll v0.10.13+0 [13c41daa] + aws_c_io_jll v0.26.3+0 ⌅ [bd1f34fb] + aws_c_s3_jll v0.11.5+0 [1282aa60] + aws_c_sdkutils_jll v0.2.4+1 [b2a88e68] + aws_checksums_jll v0.2.10+0 [c4b69c83] + dlfcn_win32_jll v1.4.2+0 [477f73a3] + libaec_jll v1.1.7+0 [9aeb927a] + mpif_jll v0.1.7+0 [1317d2d5] + oneTBB_jll v2022.3.0+0 [cddc5d3d] + s2n_tls_jll v1.7.3+0 [0dad84c5] + ArgTools v1.1.2 [56f22d72] + Artifacts v1.11.0 [2a0f44e3] + Base64 v1.11.0 [ade2ca70] + Dates v1.11.0 [f43a241f] + Downloads v1.7.0 [7b1f6079] + FileWatching v1.11.0 [ac6e5ff7] + JuliaSyntaxHighlighting v1.13.0 [4af54fe1] + LazyArtifacts v1.11.0 [b27032c2] + LibCURL v1.0.0 [76f85450] + LibGit2 v1.11.0 [8f399da3] + Libdl v1.11.0 [37e2e46d] + LinearAlgebra v1.14.0 [56ddb016] + Logging v1.11.0 [d6f4376e] + Markdown v1.11.0 [a63ad114] + Mmap v1.11.0 [ca575930] + NetworkOptions v1.3.0 [44cfe95a] + Pkg v1.14.0 [de0858da] + Printf v1.11.0 [9a3f8284] + Random v1.11.0 [ea8e919c] + SHA v1.13.0 [f489334b] + StyledStrings v1.13.0 [fa267f1f] + TOML v1.0.3 [a4e569a6] + Tar v1.10.0 [cf7118a7] + UUIDs v1.11.0 [4ec0a83e] + Unicode v1.11.0 [e66e0078] + CompilerSupportLibraries_jll v1.5.2+0 [deac9b47] + LibCURL_jll v8.20.0+1 [e37daf67] + LibGit2_jll v1.9.4+0 [29816b5a] + LibSSH2_jll v1.11.101+0 [14a3606d] + MozillaCACerts_jll v2026.5.14 [4536629a] + OpenBLAS_jll v0.3.33+0 [458c3c95] + OpenSSL_jll v3.5.6+0 [efcefdf7] + PCRE2_jll v10.47.0+0 [83775a58] + Zlib_jll v1.3.2+0 [3161d3a3] + Zstd_jll v1.5.7+1 [8e850b90] + libblastrampoline_jll v5.15.0+0 [8e850ede] + nghttp2_jll v1.69.0+0 [3f19e933] + p7zip_jll v17.8.0+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 25.3s ################################################################################ # Precompilation # Precompiling PkgEval dependencies... Project No packages added to or removed from `~/.julia/environments/pkgeval/Project.toml` Manifest No packages added to or removed from `~/.julia/environments/pkgeval/Manifest.toml` Precompiling package dependencies... Precompiling project... 0.6 s ✓ Reexport 1.1 s ✓ Statistics 1.2 s ✓ DocStringExtensions 20.3 s ✓ AbstractFFTs 1.2 s ✓ Requires 1.5 s ✓ Compat 3.0 s ✓ Preferences 0.7 s ✓ Compat → CompatLinearAlgebraExt 3.5 s ✓ JLLWrappers 3.6 s ✓ MPIPreferences 3.8 s ✓ libaec_jll 7.1 s ✓ IntelOpenMP_jll 3.6 s ✓ aws_c_common_jll 3.7 s ✓ Xorg_libpciaccess_jll 3.6 s ✓ Libiconv_jll 3.5 s ✓ s2n_tls_jll 7.5 s ✓ oneTBB_jll 2.7 s ✓ dlfcn_win32_jll 3.7 s ✓ FFTW_jll 2.6 s ✓ MicrosoftMPI_jll 6.3 s ✓ MPItrampoline_jll 3.5 s ✓ aws_checksums_jll 3.6 s ✓ aws_c_sdkutils_jll 3.6 s ✓ aws_c_cal_jll 3.6 s ✓ aws_c_compression_jll 3.8 s ✓ XML2_jll  Downloading artifact: IntelOpenMP  Downloading artifact: oneTBB 12.6 s ✓ MKL_jll 3.6 s ✓ aws_c_io_jll 3.6 s ✓ Hwloc_jll 89.5 s ✓ FFTW 3.8 s ✓ aws_c_http_jll 3.8 s ✓ MPICH_jll 6.6 s ✓ OpenMPI_jll 6.6 s ✓ MPIABI_jll 3.7 s ✓ aws_c_auth_jll 6.7 s ✓ mpif_jll 3.6 s ✓ aws_c_s3_jll 4.1 s ✓ HDF5_jll 107.6 s ✓ HDF5 ┌ Info: JuliaLowering threw given input: │ code = │ :(#= /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:1 =# Core.@doc "$(TYPEDEF)\n\nThe physical grid.\n``x`` is uniformly spaced and periodic with the left boundary at ``x[1]`` and the right boundary at ``x[NX + 1] = x[1]`` as is standard for DFTs.\n``z`` is a standard DCT/DST type II grid -- uniformly spaced interior points with the boundaries at ``z[1/2]`` and ``z[NZ + 1/2]``.\nThe float type of the grid determines the float point precision of the simulation and since we use FFTW is restriced to `Float32` or `Float64`.\n\n# Fields\n$(TYPEDFIELDS)\n" struct Grid{T <: SingleOrDouble} │ #= /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:12 =# │ "Number of grid points in ``x``" │ NX::Int │ #= /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:14 =# │ "Number of grid points in ``z``" │ NZ::Int │ #= /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:16 =# │ "Lower and upper ``x`` bounds: ``[x₀,x₁)``" │ x_bounds::NTuple{2, T} │ #= /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:18 =# │ "Lower and upper ``z`` bounds: ``[z₀,z₁]``" │ z_bounds::NTuple{2, T} │ #= /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:21 =# │ #= /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:21 =# @doc "$(TYPEDSIGNATURES)\nCreate a physical [`Grid`](@ref) with float type `FT` and `(NX,NZ)` points.\nThe lateral bounds, `[x₀,x₁)` are set with a 2-tuple `x_bounds` or a single number `LX` which is equivalent to passing `(0, LX)`.\nSimilarly, the vertical bounds `[z₀,z₁]` are set by the 2-tuple `z_bounds` or a height `LZ` equivalent to `(-LZ, 0)`.\n\n# Examples\n```jldoctest\njulia> grid = Grid(256,128,(-1000,1000),(-1,1))\nGrid{Float64}:\n ├── NX: 256\n ├── NZ: 128\n ├─── x: [-1000,1000)\n └─── z: [-1,1]\n```\n```jldoctest\njulia> grid = Grid(Float32,256,128,(-1000,1000),10)\nGrid{Float32}:\n ├── NX: 256\n ├── NZ: 128\n ├─── x: [-1000,1000)\n └─── z: [-10,0]\n```\n" function Grid(FT, NX, NZ, x_bounds, z_bounds) │ #= /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:44 =# │ #= /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:45 =# │ NX > 0 || throw(DomainError(NX, "NX must be positive")) │ #= /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:46 =# │ NZ > 0 || throw(DomainError(NZ, "NZ must be positive")) │ #= /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:47 =# │ x_bounds[1] != x_bounds[2] || throw(ArgumentError("Length (x) of the domain cannot be 0")) │ #= /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:49 =# │ z_bounds[1] != z_bounds[2] || throw(ArgumentError("Length (z) of the domain cannot be 0")) │ #= /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:52 =# │ return new{FT}(NX, NZ, x_bounds, z_bounds) │ end │ end) │ st0 = │ SyntaxTree with attributes mod,kind,var_id,toplevel_pure,scope_type,macro_source,name_val,syntax_flags,meta,scope_layer,value,jl_source,is_toplevel_thunk,source,__macro_ctx__ │ [macrocall] │ │ @doc :: Identifier │ mod │ :(#= /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:1 =#) :: Value │ │ [string] │ │ TYPEDEF :: Identifier │ │ "\n\nThe physical grid.\n``x`` is uniformly spaced and periodic with the left boundary at ``x[1]`` and the right boundary at ``x[NX + 1] = x[1]`` as is standard for DFTs.\n``z`` is a standard DCT/DST type II grid -- uniformly spaced interior points with the boundaries at ``z[1/2]`` and ``z[NZ + 1/2]``.\nThe float type of the grid determines the float point precision of the simulation and since we use FFTW is restriced to `Float32` or `Float64`.\n\n# Fields\n" :: Value │ │ TYPEDFIELDS :: Identifier │ │ "\n" :: Value │ │ [struct] │ │ false :: Value │ │ [curly] │ │ Grid :: Identifier │ │ [<:] │ │ T :: Identifier │ │ SingleOrDouble :: Identifier │ │ [block] │ │ "Number of grid points in ``x``" :: Value │ │ [::] │ │ NX :: Identifier │ │ Int :: Identifier │ │ "Number of grid points in ``z``" :: Value │ │ [::] │ │ NZ :: Identifier │ │ Int :: Identifier │ │ "Lower and upper ``x`` bounds: ``[x₀,x₁)``" :: Value │ │ [::] │ │ x_bounds :: Identifier │ │ [curly] │ │ NTuple :: Identifier │ │ 2 :: Value │ │ T :: Identifier │ │ "Lower and upper ``z`` bounds: ``[z₀,z₁]``" :: Value │ │ [::] │ │ z_bounds :: Identifier │ │ [curly] │ │ NTuple :: Identifier │ │ 2 :: Value │ │ T :: Identifier │ │ [macrocall] │ │ @doc :: Identifier │ │ :(#= /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:21 =#) :: Value │ │ [string] │ │ TYPEDSIGNATURES :: Identifier │ │ "\nCreate a physical [`Grid`](@ref) with float type `FT` and `(NX,NZ)` points.\nThe lateral bounds, `[x₀,x₁)` are set with a 2-tuple `x_bounds` or a single number `LX` which is equivalent to passing `(0, LX)`.\nSimilarly, the vertical bounds `[z₀,z₁]` are set by the 2-tuple `z_bounds` or a height `LZ` equivalent to `(-LZ, 0)`.\n\n# Examples\n```jldoctest\njulia> grid = Grid(256,128,(-1000,1000),(-1,1))\nGrid{Float64}:\n ├── NX: 256\n ├── NZ: 128\n ├─── x: [-1000,1000)\n └─── z: [-1,1]\n```\n```jldoctest\njulia> grid = Grid(Float32,256,128,(-1000,1000),10)\nGrid{Float32}:\n ├── NX: 256\n ├── NZ: 128\n ├─── x: [-1000,1000)\n └─── z: [-10,0]\n```\n" :: Value │ │ [function] │ │ [call] │ │ Grid :: Identifier │ │ FT :: Identifier │ │ NX :: Identifier │ │ NZ :: Identifier │ │ x_bounds :: Identifier │ │ z_bounds :: Identifier │ │ [block] │ │ [||] │ │ [call] │ │ > :: Identifier │ │ NX :: Identifier │ │ 0 :: Value │ │ [call] │ │ throw :: Identifier │ │ [call] │ │ DomainError :: Identifier │ │ NX :: Identifier │ │ "NX must be positive" :: Value │ │ [||] │ │ [call] │ │ > :: Identifier │ │ NZ :: Identifier │ │ 0 :: Value │ │ [call] │ │ throw :: Identifier │ │ [call] │ │ DomainError :: Identifier │ │ NZ :: Identifier │ │ "NZ must be positive" :: Value │ │ [||] │ │ [call] │ │ != :: Identifier │ │ [ref] │ │ x_bounds :: Identifier │ │ 1 :: Value │ │ [ref] │ │ x_bounds :: Identifier │ │ 2 :: Value │ │ [call] │ │ throw :: Identifier │ │ [call] │ │ ArgumentError :: Identifier │ │ "Length (x) of the domain cannot be 0" :: Value │ │ [||] │ │ [call] │ │ != :: Identifier │ │ [ref] │ │ z_bounds :: Identifier │ │ 1 :: Value │ │ [ref] │ │ z_bounds :: Identifier │ │ 2 :: Value │ │ [call] │ │ throw :: Identifier │ │ [call] │ │ ArgumentError :: Identifier │ │ "Length (z) of the domain cannot be 0" :: Value │ │ [return] │ │ [call] │ │ [curly] │ │ new :: Identifier │ │ FT :: Identifier │ │ NX :: Identifier │ │ NZ :: Identifier │ │ x_bounds :: Identifier │ │ z_bounds :: Identifier │ │ │ st1 = │ SyntaxTree with attributes mod,kind,var_id,toplevel_pure,scope_type,macro_source,name_val,syntax_flags,meta,scope_layer,value,jl_source,is_toplevel_thunk,source │ [block] │ │ [=] │ │ val :: Identifier │ scope_layer=3 │ [struct] │ │ false :: Value │ macro_source=112 │ [curly] │ │ Grid :: Identifier │ scope_layer=1 │ [<:] │ scope_layer=1 │ T :: Identifier │ scope_layer=1 │ SingleOrDouble :: Identifier │ scope_layer=1 │ [block] │ │ "Number of grid points in ``x``" :: Value │ macro_source=112 │ [::] │ │ NX :: Identifier │ scope_layer=1 │ Int :: Identifier │ scope_layer=1 │ "Number of grid points in ``z``" :: Value │ macro_source=112 │ [::] │ │ NZ :: Identifier │ scope_layer=1 │ Int :: Identifier │ scope_layer=1 │ "Lower and upper ``x`` bounds: ``[x₀,x₁)``" :: Value │ macro_source=112 │ [::] │ │ x_bounds :: Identifier │ scope_layer=1 │ [curly] │ │ NTuple :: Identifier │ scope_layer=1 │ 2 :: Value │ macro_source=112 │ T :: Identifier │ scope_layer=1 │ "Lower and upper ``z`` bounds: ``[z₀,z₁]``" :: Value │ macro_source=112 │ [::] │ │ z_bounds :: Identifier │ scope_layer=1 │ [curly] │ │ NTuple :: Identifier │ scope_layer=1 │ 2 :: Value │ macro_source=112 │ T :: Identifier │ scope_layer=1 │ [block] │ │ [=] │ │ #1#val :: Identifier │ scope_layer=1 │ [function] │ │ [call] │ │ Grid :: Identifier │ scope_layer=1 │ FT :: Identifier │ scope_layer=1 │ NX :: Identifier │ scope_layer=1 │ NZ :: Identifier │ scope_layer=1 │ x_bounds :: Identifier │ scope_layer=1 │ z_bounds :: Identifier │ scope_layer=1 │ [block] │ │ [||] │ │ [call] │ │ > :: Identifier │ scope_layer=1 │ NX :: Identifier │ scope_layer=1 │ 0 :: Value │ macro_source=112 │ [call] │ │ throw :: Identifier │ scope_layer=1 │ [call] │ │ DomainError :: Identifier │ scope_layer=1 │ NX :: Identifier │ scope_layer=1 │ "NX must be positive" :: Value │ macro_source=112 │ [||] │ │ [call] │ │ > :: Identifier │ scope_layer=1 │ NZ :: Identifier │ scope_layer=1 │ 0 :: Value │ macro_source=112 │ [call] │ │ throw :: Identifier │ scope_layer=1 │ [call] │ │ DomainError :: Identifier │ scope_layer=1 │ NZ :: Identifier │ scope_layer=1 │ "NZ must be positive" :: Value │ macro_source=112 │ [||] │ │ [call] │ │ != :: Identifier │ scope_layer=1 │ [ref] │ │ x_bounds :: Identifier │ scope_layer=1 │ 1 :: Value │ macro_source=112 │ [ref] │ │ x_bounds :: Identifier │ scope_layer=1 │ 2 :: Value │ macro_source=112 │ [call] │ │ throw :: Identifier │ scope_layer=1 │ [call] │ │ ArgumentError :: Identifier │ scope_layer=1 │ "Length (x) of the domain cannot be 0" :: Value │ macro_source=112 │ [||] │ │ [call] │ │ != :: Identifier │ scope_layer=1 │ [ref] │ │ z_bounds :: Identifier │ scope_layer=1 │ 1 :: Value │ macro_source=112 │ [ref] │ │ z_bounds :: Identifier │ scope_layer=1 │ 2 :: Value │ macro_source=112 │ [call] │ │ throw :: Identifier │ scope_layer=1 │ [call] │ │ ArgumentError :: Identifier │ scope_layer=1 │ "Length (z) of the domain cannot be 0" :: Value │ macro_source=112 │ [return] │ │ [call] │ │ [curly] │ │ new :: Identifier │ scope_layer=1 │ FT :: Identifier │ scope_layer=1 │ NX :: Identifier │ scope_layer=1 │ NZ :: Identifier │ scope_layer=1 │ x_bounds :: Identifier │ scope_layer=1 │ z_bounds :: Identifier │ scope_layer=1 │ [call] │ │ Base.Docs.doc! :: Value │ macro_source=112 │ SawyerEliassenSolver.Domains :: Value │ macro_source=112 │ [call] │ │ Base.Docs.Binding :: Value │ macro_source=112 │ SawyerEliassenSolver.Domains :: Value │ macro_source=112 │ [inert] │ │ Grid :: Identifier │ │ [call] │ │ Base.Docs.docstr :: Value │ macro_source=112 │ [call] │ │ Core.svec :: Value │ macro_source=112 │ [call] │ │ DocStringExtensions.interpolation :: Value │ macro_source=112 │ TYPEDSIGNATURES :: Identifier │ scope_layer=1 │ [inert] │ │ [function] │ │ [call] │ │ Grid :: Identifier │ │ FT :: Identifier │ │ NX :: Identifier │ │ NZ :: Identifier │ │ x_bounds :: Identifier │ │ z_bounds :: Identifier │ │ [block] │ │ [||] │ │ [call] │ │ > :: Identifier │ │ NX :: Identifier │ │ 0 :: Value │ │ [call] │ │ throw :: Identifier │ │ [call] │ │ DomainError :: Identifier │ │ NX :: Identifier │ │ "NX must be positive" :: Value │ │ [||] │ │ [call] │ │ > :: Identifier │ │ NZ :: Identifier │ │ 0 :: Value │ │ [call] │ │ throw :: Identifier │ │ [call] │ │ DomainError :: Identifier │ │ NZ :: Identifier │ │ "NZ must be positive" :: Value │ │ [||] │ │ [call] │ │ != :: Identifier │ │ [ref] │ │ x_bounds :: Identifier │ │ 1 :: Value │ │ [ref] │ │ x_bounds :: Identifier │ │ 2 :: Value │ │ [call] │ │ throw :: Identifier │ │ [call] │ │ ArgumentError :: Identifier │ │ "Length (x) of the domain cannot be 0" :: Value │ │ [||] │ │ [call] │ │ != :: Identifier │ │ [ref] │ │ z_bounds :: Identifier │ │ 1 :: Value │ │ [ref] │ │ z_bounds :: Identifier │ │ 2 :: Value │ │ [call] │ │ throw :: Identifier │ │ [call] │ │ ArgumentError :: Identifier │ │ "Length (z) of the domain cannot be 0" :: Value │ │ [return] │ │ [call] │ │ [curly] │ │ new :: Identifier │ │ FT :: Identifier │ │ NX :: Identifier │ │ NZ :: Identifier │ │ x_bounds :: Identifier │ │ z_bounds :: Identifier │ │ "\nCreate a physical [`Grid`](@ref) with float type `FT` and `(NX,NZ)` points.\nThe lateral bounds, `[x₀,x₁)` are set with a 2-tuple `x_bounds` or a single number `LX` which is equivalent to passing `(0, LX)`.\nSimilarly, the vertical bounds `[z₀,z₁]` are set by the 2-tuple `z_bounds` or a height `LZ` equivalent to `(-LZ, 0)`.\n\n# Examples\n```jldoctest\njulia> grid = Grid(256,128,(-1000,1000),(-1,1))\nGrid{Float64}:\n ├── NX: 256\n ├── NZ: 128\n ├─── x: [-1000,1000)\n └─── z: [-1,1]\n```\n```jldoctest\njulia> grid = Grid(Float32,256,128,(-1000,1000),10)\nGrid{Float32}:\n ├── NX: 256\n ├── NZ: 128\n ├─── x: [-1000,1000)\n └─── z: [-10,0]\n```\n" :: Value │ macro_source=112 │ [call] │ macro_source=112 │ Dict{Symbol, Any} :: Value │ macro_source=112 │ :path => "/home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl" :: Value │ macro_source=112 │ :linenumber => 21 :: Value │ macro_source=112 │ :module => SawyerEliassenSolver.Domains :: Value │ macro_source=112 │ [curly] │ │ Union :: Identifier │ scope_layer=1 │ [curly] │ │ Tuple :: Identifier │ scope_layer=1 │ Any :: Identifier │ scope_layer=1 │ Any :: Identifier │ scope_layer=1 │ Any :: Identifier │ scope_layer=1 │ Any :: Identifier │ scope_layer=1 │ Any :: Identifier │ scope_layer=1 │ #1#val :: Identifier │ scope_layer=1 │ [call] │ │ Base.Docs.doc! :: Value │ macro_source=112 │ SawyerEliassenSolver.Domains :: Value │ macro_source=112 │ [call] │ │ Base.Docs.Binding :: Value │ macro_source=112 │ SawyerEliassenSolver.Domains :: Value │ │ [inert] │ jl_source=L65 │ Grid :: Identifier │ │ [call] │ │ Base.Docs.docstr :: Value │ macro_source=112 │ [call] │ │ Core.svec :: Value │ macro_source=112 │ [call] │ │ DocStringExtensions.interpolation :: Value │ macro_source=112 │ TYPEDEF :: Identifier │ scope_layer=1 │ [inert] │ │ [struct] │ │ false :: Value │ │ [curly] │ │ Grid :: Identifier │ │ [<:] │ │ T :: Identifier │ │ SingleOrDouble :: Identifier │ │ [block] │ │ "Number of grid points in ``x``" :: Value │ │ [::] │ │ NX :: Identifier │ │ Int :: Identifier │ │ "Number of grid points in ``z``" :: Value │ │ [::] │ │ NZ :: Identifier │ │ Int :: Identifier │ │ "Lower and upper ``x`` bounds: ``[x₀,x₁)``" :: Value │ │ [::] │ │ x_bounds :: Identifier │ │ [curly] │ │ NTuple :: Identifier │ │ 2 :: Value │ │ T :: Identifier │ │ "Lower and upper ``z`` bounds: ``[z₀,z₁]``" :: Value │ │ [::] │ │ z_bounds :: Identifier │ │ [curly] │ │ NTuple :: Identifier │ │ 2 :: Value │ │ T :: Identifier │ │ [macrocall] │ │ @doc :: Identifier │ │ :(#= /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:21 =#) :: Value │ │ [string] │ │ TYPEDSIGNATURES :: Identifier │ │ "\nCreate a physical [`Grid`](@ref) with float type `FT` and `(NX,NZ)` points.\nThe lateral bounds, `[x₀,x₁)` are set with a 2-tuple `x_bounds` or a single number `LX` which is equivalent to passing `(0, LX)`.\nSimilarly, the vertical bounds `[z₀,z₁]` are set by the 2-tuple `z_bounds` or a height `LZ` equivalent to `(-LZ, 0)`.\n\n# Examples\n```jldoctest\njulia> grid = Grid(256,128,(-1000,1000),(-1,1))\nGrid{Float64}:\n ├── NX: 256\n ├── NZ: 128\n ├─── x: [-1000,1000)\n └─── z: [-1,1]\n```\n```jldoctest\njulia> grid = Grid(Float32,256,128,(-1000,1000),10)\nGrid{Float32}:\n ├── NX: 256\n ├── NZ: 128\n ├─── x: [-1000,1000)\n └─── z: [-10,0]\n```\n" :: Value │ │ [function] │ │ [call] │ │ Grid :: Identifier │ │ FT :: Identifier │ │ NX :: Identifier │ │ NZ :: Identifier │ │ x_bounds :: Identifier │ │ z_bounds :: Identifier │ │ [block] │ │ [||] │ │ [call] │ │ > :: Identifier │ │ NX :: Identifier │ │ 0 :: Value │ │ [call] │ │ throw :: Identifier │ │ [call] │ │ DomainError :: Identifier │ │ NX :: Identifier │ │ "NX must be positive" :: Value │ │ [||] │ │ [call] │ │ > :: Identifier │ │ NZ :: Identifier │ │ 0 :: Value │ │ [call] │ │ throw :: Identifier │ │ [call] │ │ DomainError :: Identifier │ │ NZ :: Identifier │ │ "NZ must be positive" :: Value │ │ [||] │ │ [call] │ │ != :: Identifier │ │ [ref] │ │ x_bounds :: Identifier │ │ 1 :: Value │ │ [ref] │ │ x_bounds :: Identifier │ │ 2 :: Value │ │ [call] │ │ throw :: Identifier │ │ [call] │ │ ArgumentError :: Identifier │ │ "Length (x) of the domain cannot be 0" :: Value │ │ [||] │ │ [call] │ │ != :: Identifier │ │ [ref] │ │ z_bounds :: Identifier │ │ 1 :: Value │ │ [ref] │ │ z_bounds :: Identifier │ │ 2 :: Value │ │ [call] │ │ throw :: Identifier │ │ [call] │ │ ArgumentError :: Identifier │ │ "Length (z) of the domain cannot be 0" :: Value │ │ [return] │ │ [call] │ │ [curly] │ │ new :: Identifier │ │ FT :: Identifier │ │ NX :: Identifier │ │ NZ :: Identifier │ │ x_bounds :: Identifier │ │ z_bounds :: Identifier │ │ "\n\nThe physical grid.\n``x`` is uniformly spaced and periodic with the left boundary at ``x[1]`` and the right boundary at ``x[NX + 1] = x[1]`` as is standard for DFTs.\n``z`` is a standard DCT/DST type II grid -- uniformly spaced interior points with the boundaries at ``z[1/2]`` and ``z[NZ + 1/2]``.\nThe float type of the grid determines the float point precision of the simulation and since we use FFTW is restriced to `Float32` or `Float64`.\n\n# Fields\n" :: Value │ macro_source=112 │ [call] │ │ DocStringExtensions.interpolation :: Value │ macro_source=112 │ TYPEDFIELDS :: Identifier │ scope_layer=1 │ [inert] │ │ [struct] │ │ false :: Value │ │ [curly] │ │ Grid :: Identifier │ │ [<:] │ │ T :: Identifier │ │ SingleOrDouble :: Identifier │ │ [block] │ │ "Number of grid points in ``x``" :: Value │ │ [::] │ │ NX :: Identifier │ │ Int :: Identifier │ │ "Number of grid points in ``z``" :: Value │ │ [::] │ │ NZ :: Identifier │ │ Int :: Identifier │ │ "Lower and upper ``x`` bounds: ``[x₀,x₁)``" :: Value │ │ [::] │ │ x_bounds :: Identifier │ │ [curly] │ │ NTuple :: Identifier │ │ 2 :: Value │ │ T :: Identifier │ │ "Lower and upper ``z`` bounds: ``[z₀,z₁]``" :: Value │ │ [::] │ │ z_bounds :: Identifier │ │ [curly] │ │ NTuple :: Identifier │ │ 2 :: Value │ │ T :: Identifier │ │ [macrocall] │ │ @doc :: Identifier │ │ :(#= /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:21 =#) :: Value │ │ [string] │ │ TYPEDSIGNATURES :: Identifier │ │ "\nCreate a physical [`Grid`](@ref) with float type `FT` and `(NX,NZ)` points.\nThe lateral bounds, `[x₀,x₁)` are set with a 2-tuple `x_bounds` or a single number `LX` which is equivalent to passing `(0, LX)`.\nSimilarly, the vertical bounds `[z₀,z₁]` are set by the 2-tuple `z_bounds` or a height `LZ` equivalent to `(-LZ, 0)`.\n\n# Examples\n```jldoctest\njulia> grid = Grid(256,128,(-1000,1000),(-1,1))\nGrid{Float64}:\n ├── NX: 256\n ├── NZ: 128\n ├─── x: [-1000,1000)\n └─── z: [-1,1]\n```\n```jldoctest\njulia> grid = Grid(Float32,256,128,(-1000,1000),10)\nGrid{Float32}:\n ├── NX: 256\n ├── NZ: 128\n ├─── x: [-1000,1000)\n └─── z: [-10,0]\n```\n" :: Value │ │ [function] │ │ [call] │ │ Grid :: Identifier │ │ FT :: Identifier │ │ NX :: Identifier │ │ NZ :: Identifier │ │ x_bounds :: Identifier │ │ z_bounds :: Identifier │ │ [block] │ │ [||] │ │ [call] │ │ > :: Identifier │ │ NX :: Identifier │ │ 0 :: Value │ │ [call] │ │ throw :: Identifier │ │ [call] │ │ DomainError :: Identifier │ │ NX :: Identifier │ │ "NX must be positive" :: Value │ │ [||] │ │ [call] │ │ > :: Identifier │ │ NZ :: Identifier │ │ 0 :: Value │ │ [call] │ │ throw :: Identifier │ │ [call] │ │ DomainError :: Identifier │ │ NZ :: Identifier │ │ "NZ must be positive" :: Value │ │ [||] │ │ [call] │ │ != :: Identifier │ │ [ref] │ │ x_bounds :: Identifier │ │ 1 :: Value │ │ [ref] │ │ x_bounds :: Identifier │ │ 2 :: Value │ │ [call] │ │ throw :: Identifier │ │ [call] │ │ ArgumentError :: Identifier │ │ "Length (x) of the domain cannot be 0" :: Value │ │ [||] │ │ [call] │ │ != :: Identifier │ │ [ref] │ │ z_bounds :: Identifier │ │ 1 :: Value │ │ [ref] │ │ z_bounds :: Identifier │ │ 2 :: Value │ │ [call] │ │ throw :: Identifier │ │ [call] │ │ ArgumentError :: Identifier │ │ "Length (z) of the domain cannot be 0" :: Value │ │ [return] │ │ [call] │ │ [curly] │ │ new :: Identifier │ │ FT :: Identifier │ │ NX :: Identifier │ │ NZ :: Identifier │ │ x_bounds :: Identifier │ │ z_bounds :: Identifier │ │ "\n" :: Value │ macro_source=112 │ [call] │ │ Dict{Symbol, Any} :: Value │ macro_source=112 │ :path => "/home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl" :: Value │ macro_source=112 │ :linenumber => 1 :: Value │ macro_source=112 │ :module => SawyerEliassenSolver.Domains :: Value │ macro_source=112 │ [call] │ │ Pair :: Value │ macro_source=112 │ [inert] │ │ fields :: Identifier │ │ [call] │ │ Dict{Symbol, Any} :: Value │ macro_source=112 │ [call] │ │ Pair{Symbol, Any} :: Value │ macro_source=112 │ [inert] │ jl_source=L65 │ NX :: Identifier │ │ "Number of grid points in ``x``" :: Value │ macro_source=112 │ [call] │ │ Pair{Symbol, Any} :: Value │ macro_source=112 │ [inert] │ jl_source=L65 │ NZ :: Identifier │ │ "Number of grid points in ``z``" :: Value │ macro_source=112 │ [call] │ │ Pair{Symbol, Any} :: Value │ macro_source=112 │ [inert] │ jl_source=L65 │ x_bounds :: Identifier │ │ "Lower and upper ``x`` bounds: ``[x₀,x₁)``" :: Value │ macro_source=112 │ [call] │ │ Pair{Symbol, Any} :: Value │ macro_source=112 │ [inert] │ jl_source=L65 │ z_bounds :: Identifier │ │ "Lower and upper ``z`` bounds: ``[z₀,z₁]``" :: Value │ macro_source=112 │ [curly] │ │ Union :: Identifier │ scope_layer=1 │ val :: Identifier │ scope_layer=3 │ │ file = "/home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl" │ line = 1 └ mod = SawyerEliassenSolver.Domains ERROR: LoadError: LoweringError: #= /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:21 =# - assignment syntax in structure fields is reserved Expression:  (= #1#val (function (call Grid FT NX NZ x_bounds z_bounds) (block (|| (call > NX 0) (call throw (call DomainError NX "NX must be positive"))) (|| (call > NZ 0) (call throw (call DomainError NZ "NZ must be positive"))) (|| (call != (ref x_bounds 1) (ref x_bounds 2)) (call throw (call ArgumentError "Length (x) of the domain cannot be 0"))) (|| (call != (ref z_bounds 1) (ref z_bounds 2)) (call throw (call ArgumentError "Length (z) of the domain cannot be 0"))) (return (call (curly new FT) NX NZ x_bounds z_bounds))))) Containing expressions:  (block "Number of grid points in ``x``" (:: NX Int) "Number of grid points in ``z``" (:: NZ Int) "Lower and upper ``x`` bounds: ``[x₀,x₁)``" (:: x_bounds (curly NTuple 2 T)) "Lower and upper ``z`` bounds: ``[z₀,z₁]``" (:: z_bounds (curly NTuple 2 T)) (= #1#val (function (call Grid FT NX NZ x_bounds z_bounds) (block (|| (call > NX 0) (call throw (call DomainError NX "NX must be positive"))) (|| (call > NZ 0) (call throw (call DomainError NZ "NZ must be positive"))) (|| (call != (ref x_bounds 1) (ref x_bounds 2)) (call throw (call ArgumentError "Length (x) of the domain cannot be 0"))) (|| (call != (ref z_bounds 1) (ref z_bounds 2)) (call throw (call ArgumentError "Length (z) of the domain cannot be 0"))) (return (call (curly new FT) NX NZ x_bounds z_bounds))))) (call Base.Docs.doc! SawyerEliassenSolver.Domains (call Base.Docs.Binding SawyerEliassenSolver.Domains :Grid) (call Base.Docs.docstr (call Core.svec (call DocStringExtensions.interpolation TYPEDSIGNATURES (inert (function (call Grid FT NX NZ x_bounds z_bounds) (block (|| (call > NX 0) (call throw (call DomainError NX "NX must be positive"))) (|| (call > NZ 0) (call throw (call DomainError NZ "NZ must be positive"))) (|| (call != (ref x_bounds 1) (ref x_bounds 2)) (call throw (call ArgumentError "Length (x) of the domain cannot be 0"))) (|| (call != (ref z_bounds 1) (ref z_bounds 2)) (call throw (call ArgumentError "Length (z) of the domain cannot be 0"))) (return (call (curly new FT) NX NZ x_bounds z_bounds)))))) "\nCreate a physical [`Grid`](@ref) with float type `FT` and `(NX,NZ)` points.\nThe lateral bounds, `[x₀,x₁)` are set with a 2-tuple `x_bounds` or a single number `LX` which is equivalent to passing `(0, LX)`.\nSimilarly, the vertical bounds `[z₀,z₁]` are set by the 2-tuple `z_bounds` or a height `LZ` equivalent to `(-LZ, 0)`.\n\n# Examples\n```jldoctest\njulia> grid = Grid(256,128,(-1000,1000),(-1,1))\nGrid{Float64}:\n ├── NX: 256\n ├── NZ: 128\n ├─── x: [-1000,1000)\n └─── z: [-1,1]\n```\n```jldoctest\njulia> grid = Grid(Float32,256,128,(-1000,1000),10)\nGrid{Float32}:\n ├── NX: 256\n ├── NZ: 128\n ├─── x: [-1000,1000)\n └─── z: [-10,0]\n```\n") (call Dict{Symbol, Any} :path => "/home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl" :linenumber => 21 :module => SawyerEliassenSolver.Domains)) (curly Union (curly Tuple Any Any Any Any Any))) #1#val)  Detailed provenance:  (= #1#val (function (call Grid FT NX NZ x_bounds z_bounds) (block (|| (call > NX 0) (call throw (call DomainError NX "NX must be positive"))) (|| (call > NZ 0) (call throw (call DomainError NZ "NZ must be positive"))) (|| (call != (ref x_bounds 1) (ref x_bounds 2)) (call throw (call ArgumentError "Length (x) of the domain cannot be 0"))) (|| (call != (ref z_bounds 1) (ref z_bounds 2)) (call throw (call ArgumentError "Length (z) of the domain cannot be 0"))) (return (call (curly new FT) NX NZ x_bounds z_bounds)))))  └─ (= #1#val (function (call Grid FT NX NZ x_bounds z_bounds) (block (|| (call > NX 0) (call throw (call DomainError NX "NX must be positive"))) (|| (call > NZ 0) (call throw (call DomainError NZ "NZ must be positive"))) (|| (call != (ref x_bounds 1) (ref x_bounds 2)) (call throw (call ArgumentError "Length (x) of the domain cannot be 0"))) (|| (call != (ref z_bounds 1) (ref z_bounds 2)) (call throw (call ArgumentError "Length (z) of the domain cannot be 0"))) (return (call (curly new FT) NX NZ x_bounds z_bounds)))))  └─ (= #1#val (function (call Grid FT NX NZ x_bounds z_bounds) (block (|| (call > NX 0) (call throw (call DomainError NX "NX must be positive"))) (|| (call > NZ 0) (call throw (call DomainError NZ "NZ must be positive"))) (|| (call != (ref x_bounds 1) (ref x_bounds 2)) (call throw (call ArgumentError "Length (x) of the domain cannot be 0"))) (|| (call != (ref z_bounds 1) (ref z_bounds 2)) (call throw (call ArgumentError "Length (z) of the domain cannot be 0"))) (return (call (curly new FT) NX NZ x_bounds z_bounds)))))  └─ (= #1#val (function (call Grid FT NX NZ x_bounds z_bounds) (block (|| (call > NX 0) (call throw (call DomainError NX "NX must be positive"))) (|| (call > NZ 0) (call throw (call DomainError NZ "NZ must be positive"))) (|| (call != (ref x_bounds 1) (ref x_bounds 2)) (call throw (call ArgumentError "Length (x) of the domain cannot be 0"))) (|| (call != (ref z_bounds 1) (ref z_bounds 2)) (call throw (call ArgumentError "Length (z) of the domain cannot be 0"))) (return (call (curly new FT) NX NZ x_bounds z_bounds)))))  ├─ @ /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:21  └─ (macrocall @doc :(#= /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:1 =#) (string TYPEDEF "\n\nThe physical grid.\n``x`` is uniformly spaced and periodic with the left boundary at ``x[1]`` and the right boundary at ``x[NX + 1] = x[1]`` as is standard for DFTs.\n``z`` is a standard DCT/DST type II grid -- uniformly spaced interior points with the boundaries at ``z[1/2]`` and ``z[NZ + 1/2]``.\nThe float type of the grid determines the float point precision of the simulation and since we use FFTW is restriced to `Float32` or `Float64`.\n\n# Fields\n" TYPEDFIELDS "\n") (struct false (curly Grid (<: T SingleOrDouble)) (block "Number of grid points in ``x``" (:: NX Int) "Number of grid points in ``z``" (:: NZ Int) "Lower and upper ``x`` bounds: ``[x₀,x₁)``" (:: x_bounds (curly NTuple 2 T)) "Lower and upper ``z`` bounds: ``[z₀,z₁]``" (:: z_bounds (curly NTuple 2 T)) (macrocall @doc :(#= /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:21 =#) (string TYPEDSIGNATURES "\nCreate a physical [`Grid`](@ref) with float type `FT` and `(NX,NZ)` points.\nThe lateral bounds, `[x₀,x₁)` are set with a 2-tuple `x_bounds` or a single number `LX` which is equivalent to passing `(0, LX)`.\nSimilarly, the vertical bounds `[z₀,z₁]` are set by the 2-tuple `z_bounds` or a height `LZ` equivalent to `(-LZ, 0)`.\n\n# Examples\n```jldoctest\njulia> grid = Grid(256,128,(-1000,1000),(-1,1))\nGrid{Float64}:\n ├── NX: 256\n ├── NZ: 128\n ├─── x: [-1000,1000)\n └─── z: [-1,1]\n```\n```jldoctest\njulia> grid = Grid(Float32,256,128,(-1000,1000),10)\nGrid{Float32}:\n ├── NX: 256\n ├── NZ: 128\n ├─── x: [-1000,1000)\n └─── z: [-10,0]\n```\n") (function (call Grid FT NX NZ x_bounds z_bounds) (block (|| (call > NX 0) (call throw (call DomainError NX "NX must be positive"))) (|| (call > NZ 0) (call throw (call DomainError NZ "NZ must be positive"))) (|| (call != (ref x_bounds 1) (ref x_bounds 2)) (call throw (call ArgumentError "Length (x) of the domain cannot be 0"))) (|| (call != (ref z_bounds 1) (ref z_bounds 2)) (call throw (call ArgumentError "Length (z) of the domain cannot be 0"))) (return (call (curly new FT) NX NZ x_bounds z_bounds))))))))  └─ @ /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:1  Stacktrace:  [1] _collect_struct_fields(ctx::Base.JuliaLowering.DesugaringContext{Dict{Symbol, Dict{Int64, Any}}}, field_names::Base.JuliaSyntax.SyntaxList{Dict{Symbol, Dict{Int64, Any}}, Vector{Int64}}, field_types::Base.JuliaSyntax.SyntaxList{Dict{Symbol, Dict{Int64, Any}}, Vector{Int64}}, field_attrs::Base.JuliaSyntax.SyntaxList{Dict{Symbol, Dict{Int64, Any}}, Vector{Int64}}, field_docs::Base.JuliaSyntax.SyntaxList{Dict{Symbol, Dict{Int64, Any}}, Vector{Int64}}, inner_defs::Base.JuliaSyntax.SyntaxList{Dict{Symbol, Dict{Int64, Any}}, Vector{Int64}}, exs::Base.JuliaSyntax.SyntaxList{Dict{Symbol, Dict{Int64, Any}}, SubArray{Int64, 1, Vector{Int64}, Tuple{UnitRange{Int64}}, true}})  @ Base.JuliaLowering /source/usr/share/julia/JuliaLowering/src/desugaring.jl:3166  [2] expand_struct_def(ctx::Base.JuliaLowering.DesugaringContext{Dict{Symbol, Dict{Int64, Any}}}, ex::Base.JuliaSyntax.SyntaxTree{Dict{Symbol, Dict{Int64, Any}}}, docs::Nothing)  @ Base.JuliaLowering /source/usr/share/julia/JuliaLowering/src/desugaring.jl:3736  [3] expand_forms_2(ctx::Base.JuliaLowering.DesugaringContext{Dict{Symbol, Dict{Int64, Any}}}, ex::Base.JuliaSyntax.SyntaxTree{Dict{Symbol, Dict{Int64, Any}}}, docs::Nothing)  @ Base.JuliaLowering /source/usr/share/julia/JuliaLowering/src/desugaring.jl:4317  [4] expand_forms_2(ctx::Base.JuliaLowering.DesugaringContext{Dict{Symbol, Dict{Int64, Any}}}, ex::Base.JuliaSyntax.SyntaxTree{Dict{Symbol, Dict{Int64, Any}}})  @ Base.JuliaLowering /source/usr/share/julia/JuliaLowering/src/desugaring.jl:4133  [5] expand_assignment(ctx::Base.JuliaLowering.DesugaringContext{Dict{Symbol, Dict{Int64, Any}}}, ex::Base.JuliaSyntax.SyntaxTree{Dict{Symbol, Dict{Int64, Any}}}, is_const::Bool)  @ Base.JuliaLowering /source/usr/share/julia/JuliaLowering/src/desugaring.jl:1320  [6] expand_assignment(ctx::Base.JuliaLowering.DesugaringContext{Dict{Symbol, Dict{Int64, Any}}}, ex::Base.JuliaSyntax.SyntaxTree{Dict{Symbol, Dict{Int64, Any}}})  @ Base.JuliaLowering /source/usr/share/julia/JuliaLowering/src/desugaring.jl:1270  [7] expand_forms_2(ctx::Base.JuliaLowering.DesugaringContext{Dict{Symbol, Dict{Int64, Any}}}, ex::Base.JuliaSyntax.SyntaxTree{Dict{Symbol, Dict{Int64, Any}}}, docs::Nothing)  @ Base.JuliaLowering /source/usr/share/julia/JuliaLowering/src/desugaring.jl:4177  [8] expand_forms_2(ctx::Base.JuliaLowering.DesugaringContext{Dict{Symbol, Dict{Int64, Any}}}, ex::Base.JuliaSyntax.SyntaxTree{Dict{Symbol, Dict{Int64, Any}}})  @ Base.JuliaLowering /source/usr/share/julia/JuliaLowering/src/desugaring.jl:4133 [inlined]  [9] (::Base.JuliaLowering.var"#expand_forms_2##2#expand_forms_2##3"{Base.JuliaLowering.DesugaringContext{Dict{Symbol, Dict{Int64, Any}}}})(e::Base.JuliaSyntax.SyntaxTree{Dict{Symbol, Dict{Int64, Any}}})  @ Base.JuliaLowering /source/usr/share/julia/JuliaLowering/src/desugaring.jl:4421 [inlined]  [10] mapchildren(f::Base.JuliaLowering.var"#expand_forms_2##2#expand_forms_2##3"{Base.JuliaLowering.DesugaringContext{Dict{Symbol, Dict{Int64, Any}}}}, ctx::Base.JuliaLowering.DesugaringContext{Dict{Symbol, Dict{Int64, Any}}}, ex::Base.JuliaSyntax.SyntaxTree{Dict{Symbol, Dict{Int64, Any}}})  @ Base.JuliaSyntax /source/usr/share/julia/JuliaSyntax/src/porcelain/syntax_graph.jl:707  [11] expand_forms_2(ctx::Base.JuliaLowering.DesugaringContext{Dict{Symbol, Dict{Int64, Any}}}, ex::Base.JuliaSyntax.SyntaxTree{Dict{Symbol, Dict{Int64, Any}}}, docs::Nothing)  @ Base.JuliaLowering /source/usr/share/julia/JuliaLowering/src/desugaring.jl:4421  [12] expand_forms_2(ctx::Base.JuliaLowering.DesugaringContext{Dict{Symbol, Dict{Int64, Any}}}, ex::Base.JuliaSyntax.SyntaxTree{Dict{Symbol, Dict{Int64, Any}}})  @ Base.JuliaLowering /source/usr/share/julia/JuliaLowering/src/desugaring.jl:4133 [inlined]  [13] expand_forms_2(ctx::Base.JuliaLowering.MacroExpansionContext{Dict{Symbol, Dict{Int64, Any}}}, ex::Base.JuliaSyntax.SyntaxTree{Dict{Symbol, Dict{Int64, Any}}})  @ Base.JuliaLowering /source/usr/share/julia/JuliaLowering/src/desugaring.jl:4450  [14] core_lowering_hook(code::Any, mod::Module, file::String, line::UInt64, world::UInt64, _warn::Bool)  @ Base.JuliaLowering /source/usr/share/julia/JuliaLowering/src/hooks.jl:30  [15] include(mapexpr::Function, mod::Module, _path::String)  @ Base Base.jl:327  [16] top-level scope  @ ~/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/Domains.jl:31  [17] include(mapexpr::Function, mod::Module, _path::String)  @ Base Base.jl:327  [18] top-level scope  @ ~/.julia/packages/SawyerEliassenSolver/qwb22/src/SawyerEliassenSolver.jl:10  [19] include(mod::Module, _path::String)  @ Base Base.jl:326  [20] include_package_for_output(pkg::Base.PkgId, input::String, syntax_version::VersionNumber, depot_path::Vector{String}, dl_load_path::Vector{String}, load_path::Vector{String}, concrete_deps::Vector{Pair{Base.PkgId, UInt128}}, source::Nothing)  @ Base loading.jl:3296  [21] top-level scope  @ stdin:5  [22] eval(m::Module, e::Any)  @ Core boot.jl:521  [23] include_string(mapexpr::typeof(identity), mod::Module, code::String, filename::String)  @ Base loading.jl:3132  [24] include_string(m::Module, txt::String, fname::String)  @ Base loading.jl:3142 [inlined]  [25] exec_options(opts::Base.JLOptions)  @ Base client.jl:353  [26] _start()  @ Base client.jl:596 in expression starting at /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:1 in expression starting at /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/Domains.jl:1 in expression starting at /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/SawyerEliassenSolver.jl:1 in expression starting at stdin:5 ✗ SawyerEliassenSolver 39 dependencies successfully precompiled in 436 seconds. 29 already precompiled. 1 dependency had output during precompilation: ┌ MKL_jll │ Downloading artifact: IntelOpenMP │ Downloading artifact: oneTBB └ Precompilation completed after 462.48s ################################################################################ # Loading # Loading SawyerEliassenSolver... ┌ Info: JuliaLowering threw given input: │ code = │ :(#= /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:1 =# Core.@doc "$(TYPEDEF)\n\nThe physical grid.\n``x`` is uniformly spaced and periodic with the left boundary at ``x[1]`` and the right boundary at ``x[NX + 1] = x[1]`` as is standard for DFTs.\n``z`` is a standard DCT/DST type II grid -- uniformly spaced interior points with the boundaries at ``z[1/2]`` and ``z[NZ + 1/2]``.\nThe float type of the grid determines the float point precision of the simulation and since we use FFTW is restriced to `Float32` or `Float64`.\n\n# Fields\n$(TYPEDFIELDS)\n" struct Grid{T <: SingleOrDouble} │ #= /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:12 =# │ "Number of grid points in ``x``" │ NX::Int │ #= /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:14 =# │ "Number of grid points in ``z``" │ NZ::Int │ #= /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:16 =# │ "Lower and upper ``x`` bounds: ``[x₀,x₁)``" │ x_bounds::NTuple{2, T} │ #= /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:18 =# │ "Lower and upper ``z`` bounds: ``[z₀,z₁]``" │ z_bounds::NTuple{2, T} │ #= /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:21 =# │ #= /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:21 =# @doc "$(TYPEDSIGNATURES)\nCreate a physical [`Grid`](@ref) with float type `FT` and `(NX,NZ)` points.\nThe lateral bounds, `[x₀,x₁)` are set with a 2-tuple `x_bounds` or a single number `LX` which is equivalent to passing `(0, LX)`.\nSimilarly, the vertical bounds `[z₀,z₁]` are set by the 2-tuple `z_bounds` or a height `LZ` equivalent to `(-LZ, 0)`.\n\n# Examples\n```jldoctest\njulia> grid = Grid(256,128,(-1000,1000),(-1,1))\nGrid{Float64}:\n ├── NX: 256\n ├── NZ: 128\n ├─── x: [-1000,1000)\n └─── z: [-1,1]\n```\n```jldoctest\njulia> grid = Grid(Float32,256,128,(-1000,1000),10)\nGrid{Float32}:\n ├── NX: 256\n ├── NZ: 128\n ├─── x: [-1000,1000)\n └─── z: [-10,0]\n```\n" function Grid(FT, NX, NZ, x_bounds, z_bounds) │ #= /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:44 =# │ #= /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:45 =# │ NX > 0 || throw(DomainError(NX, "NX must be positive")) │ #= /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:46 =# │ NZ > 0 || throw(DomainError(NZ, "NZ must be positive")) │ #= /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:47 =# │ x_bounds[1] != x_bounds[2] || throw(ArgumentError("Length (x) of the domain cannot be 0")) │ #= /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:49 =# │ z_bounds[1] != z_bounds[2] || throw(ArgumentError("Length (z) of the domain cannot be 0")) │ #= /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:52 =# │ return new{FT}(NX, NZ, x_bounds, z_bounds) │ end │ end) │ st0 = │ SyntaxTree with attributes mod,kind,var_id,toplevel_pure,scope_type,macro_source,name_val,syntax_flags,meta,scope_layer,value,jl_source,is_toplevel_thunk,source,__macro_ctx__ │ [macrocall] │ │ @doc :: Identifier │ mod │ :(#= /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:1 =#) :: Value │ │ [string] │ │ TYPEDEF :: Identifier │ │ "\n\nThe physical grid.\n``x`` is uniformly spaced and periodic with the left boundary at ``x[1]`` and the right boundary at ``x[NX + 1] = x[1]`` as is standard for DFTs.\n``z`` is a standard DCT/DST type II grid -- uniformly spaced interior points with the boundaries at ``z[1/2]`` and ``z[NZ + 1/2]``.\nThe float type of the grid determines the float point precision of the simulation and since we use FFTW is restriced to `Float32` or `Float64`.\n\n# Fields\n" :: Value │ │ TYPEDFIELDS :: Identifier │ │ "\n" :: Value │ │ [struct] │ │ false :: Value │ │ [curly] │ │ Grid :: Identifier │ │ [<:] │ │ T :: Identifier │ │ SingleOrDouble :: Identifier │ │ [block] │ │ "Number of grid points in ``x``" :: Value │ │ [::] │ │ NX :: Identifier │ │ Int :: Identifier │ │ "Number of grid points in ``z``" :: Value │ │ [::] │ │ NZ :: Identifier │ │ Int :: Identifier │ │ "Lower and upper ``x`` bounds: ``[x₀,x₁)``" :: Value │ │ [::] │ │ x_bounds :: Identifier │ │ [curly] │ │ NTuple :: Identifier │ │ 2 :: Value │ │ T :: Identifier │ │ "Lower and upper ``z`` bounds: ``[z₀,z₁]``" :: Value │ │ [::] │ │ z_bounds :: Identifier │ │ [curly] │ │ NTuple :: Identifier │ │ 2 :: Value │ │ T :: Identifier │ │ [macrocall] │ │ @doc :: Identifier │ │ :(#= /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:21 =#) :: Value │ │ [string] │ │ TYPEDSIGNATURES :: Identifier │ │ "\nCreate a physical [`Grid`](@ref) with float type `FT` and `(NX,NZ)` points.\nThe lateral bounds, `[x₀,x₁)` are set with a 2-tuple `x_bounds` or a single number `LX` which is equivalent to passing `(0, LX)`.\nSimilarly, the vertical bounds `[z₀,z₁]` are set by the 2-tuple `z_bounds` or a height `LZ` equivalent to `(-LZ, 0)`.\n\n# Examples\n```jldoctest\njulia> grid = Grid(256,128,(-1000,1000),(-1,1))\nGrid{Float64}:\n ├── NX: 256\n ├── NZ: 128\n ├─── x: [-1000,1000)\n └─── z: [-1,1]\n```\n```jldoctest\njulia> grid = Grid(Float32,256,128,(-1000,1000),10)\nGrid{Float32}:\n ├── NX: 256\n ├── NZ: 128\n ├─── x: [-1000,1000)\n └─── z: [-10,0]\n```\n" :: Value │ │ [function] │ │ [call] │ │ Grid :: Identifier │ │ FT :: Identifier │ │ NX :: Identifier │ │ NZ :: Identifier │ │ x_bounds :: Identifier │ │ z_bounds :: Identifier │ │ [block] │ │ [||] │ │ [call] │ │ > :: Identifier │ │ NX :: Identifier │ │ 0 :: Value │ │ [call] │ │ throw :: Identifier │ │ [call] │ │ DomainError :: Identifier │ │ NX :: Identifier │ │ "NX must be positive" :: Value │ │ [||] │ │ [call] │ │ > :: Identifier │ │ NZ :: Identifier │ │ 0 :: Value │ │ [call] │ │ throw :: Identifier │ │ [call] │ │ DomainError :: Identifier │ │ NZ :: Identifier │ │ "NZ must be positive" :: Value │ │ [||] │ │ [call] │ │ != :: Identifier │ │ [ref] │ │ x_bounds :: Identifier │ │ 1 :: Value │ │ [ref] │ │ x_bounds :: Identifier │ │ 2 :: Value │ │ [call] │ │ throw :: Identifier │ │ [call] │ │ ArgumentError :: Identifier │ │ "Length (x) of the domain cannot be 0" :: Value │ │ [||] │ │ [call] │ │ != :: Identifier │ │ [ref] │ │ z_bounds :: Identifier │ │ 1 :: Value │ │ [ref] │ │ z_bounds :: Identifier │ │ 2 :: Value │ │ [call] │ │ throw :: Identifier │ │ [call] │ │ ArgumentError :: Identifier │ │ "Length (z) of the domain cannot be 0" :: Value │ │ [return] │ │ [call] │ │ [curly] │ │ new :: Identifier │ │ FT :: Identifier │ │ NX :: Identifier │ │ NZ :: Identifier │ │ x_bounds :: Identifier │ │ z_bounds :: Identifier │ │ │ st1 = │ SyntaxTree with attributes mod,kind,var_id,toplevel_pure,scope_type,macro_source,name_val,syntax_flags,meta,scope_layer,value,jl_source,is_toplevel_thunk,source │ [block] │ │ [=] │ │ val :: Identifier │ scope_layer=3 │ [struct] │ │ false :: Value │ macro_source=112 │ [curly] │ │ Grid :: Identifier │ scope_layer=1 │ [<:] │ scope_layer=1 │ T :: Identifier │ scope_layer=1 │ SingleOrDouble :: Identifier │ scope_layer=1 │ [block] │ │ "Number of grid points in ``x``" :: Value │ macro_source=112 │ [::] │ │ NX :: Identifier │ scope_layer=1 │ Int :: Identifier │ scope_layer=1 │ "Number of grid points in ``z``" :: Value │ macro_source=112 │ [::] │ │ NZ :: Identifier │ scope_layer=1 │ Int :: Identifier │ scope_layer=1 │ "Lower and upper ``x`` bounds: ``[x₀,x₁)``" :: Value │ macro_source=112 │ [::] │ │ x_bounds :: Identifier │ scope_layer=1 │ [curly] │ │ NTuple :: Identifier │ scope_layer=1 │ 2 :: Value │ macro_source=112 │ T :: Identifier │ scope_layer=1 │ "Lower and upper ``z`` bounds: ``[z₀,z₁]``" :: Value │ macro_source=112 │ [::] │ │ z_bounds :: Identifier │ scope_layer=1 │ [curly] │ │ NTuple :: Identifier │ scope_layer=1 │ 2 :: Value │ macro_source=112 │ T :: Identifier │ scope_layer=1 │ [block] │ │ [=] │ │ #1#val :: Identifier │ scope_layer=1 │ [function] │ │ [call] │ │ Grid :: Identifier │ scope_layer=1 │ FT :: Identifier │ scope_layer=1 │ NX :: Identifier │ scope_layer=1 │ NZ :: Identifier │ scope_layer=1 │ x_bounds :: Identifier │ scope_layer=1 │ z_bounds :: Identifier │ scope_layer=1 │ [block] │ │ [||] │ │ [call] │ │ > :: Identifier │ scope_layer=1 │ NX :: Identifier │ scope_layer=1 │ 0 :: Value │ macro_source=112 │ [call] │ │ throw :: Identifier │ scope_layer=1 │ [call] │ │ DomainError :: Identifier │ scope_layer=1 │ NX :: Identifier │ scope_layer=1 │ "NX must be positive" :: Value │ macro_source=112 │ [||] │ │ [call] │ │ > :: Identifier │ scope_layer=1 │ NZ :: Identifier │ scope_layer=1 │ 0 :: Value │ macro_source=112 │ [call] │ │ throw :: Identifier │ scope_layer=1 │ [call] │ │ DomainError :: Identifier │ scope_layer=1 │ NZ :: Identifier │ scope_layer=1 │ "NZ must be positive" :: Value │ macro_source=112 │ [||] │ │ [call] │ │ != :: Identifier │ scope_layer=1 │ [ref] │ │ x_bounds :: Identifier │ scope_layer=1 │ 1 :: Value │ macro_source=112 │ [ref] │ │ x_bounds :: Identifier │ scope_layer=1 │ 2 :: Value │ macro_source=112 │ [call] │ │ throw :: Identifier │ scope_layer=1 │ [call] │ │ ArgumentError :: Identifier │ scope_layer=1 │ "Length (x) of the domain cannot be 0" :: Value │ macro_source=112 │ [||] │ │ [call] │ │ != :: Identifier │ scope_layer=1 │ [ref] │ │ z_bounds :: Identifier │ scope_layer=1 │ 1 :: Value │ macro_source=112 │ [ref] │ │ z_bounds :: Identifier │ scope_layer=1 │ 2 :: Value │ macro_source=112 │ [call] │ │ throw :: Identifier │ scope_layer=1 │ [call] │ │ ArgumentError :: Identifier │ scope_layer=1 │ "Length (z) of the domain cannot be 0" :: Value │ macro_source=112 │ [return] │ │ [call] │ │ [curly] │ │ new :: Identifier │ scope_layer=1 │ FT :: Identifier │ scope_layer=1 │ NX :: Identifier │ scope_layer=1 │ NZ :: Identifier │ scope_layer=1 │ x_bounds :: Identifier │ scope_layer=1 │ z_bounds :: Identifier │ scope_layer=1 │ [call] │ │ Base.Docs.doc! :: Value │ macro_source=112 │ SawyerEliassenSolver.Domains :: Value │ macro_source=112 │ [call] │ │ Base.Docs.Binding :: Value │ macro_source=112 │ SawyerEliassenSolver.Domains :: Value │ macro_source=112 │ [inert] │ │ Grid :: Identifier │ │ [call] │ │ Base.Docs.docstr :: Value │ macro_source=112 │ [call] │ │ Core.svec :: Value │ macro_source=112 │ [call] │ │ DocStringExtensions.interpolation :: Value │ macro_source=112 │ TYPEDSIGNATURES :: Identifier │ scope_layer=1 │ [inert] │ │ [function] │ │ [call] │ │ Grid :: Identifier │ │ FT :: Identifier │ │ NX :: Identifier │ │ NZ :: Identifier │ │ x_bounds :: Identifier │ │ z_bounds :: Identifier │ │ [block] │ │ [||] │ │ [call] │ │ > :: Identifier │ │ NX :: Identifier │ │ 0 :: Value │ │ [call] │ │ throw :: Identifier │ │ [call] │ │ DomainError :: Identifier │ │ NX :: Identifier │ │ "NX must be positive" :: Value │ │ [||] │ │ [call] │ │ > :: Identifier │ │ NZ :: Identifier │ │ 0 :: Value │ │ [call] │ │ throw :: Identifier │ │ [call] │ │ DomainError :: Identifier │ │ NZ :: Identifier │ │ "NZ must be positive" :: Value │ │ [||] │ │ [call] │ │ != :: Identifier │ │ [ref] │ │ x_bounds :: Identifier │ │ 1 :: Value │ │ [ref] │ │ x_bounds :: Identifier │ │ 2 :: Value │ │ [call] │ │ throw :: Identifier │ │ [call] │ │ ArgumentError :: Identifier │ │ "Length (x) of the domain cannot be 0" :: Value │ │ [||] │ │ [call] │ │ != :: Identifier │ │ [ref] │ │ z_bounds :: Identifier │ │ 1 :: Value │ │ [ref] │ │ z_bounds :: Identifier │ │ 2 :: Value │ │ [call] │ │ throw :: Identifier │ │ [call] │ │ ArgumentError :: Identifier │ │ "Length (z) of the domain cannot be 0" :: Value │ │ [return] │ │ [call] │ │ [curly] │ │ new :: Identifier │ │ FT :: Identifier │ │ NX :: Identifier │ │ NZ :: Identifier │ │ x_bounds :: Identifier │ │ z_bounds :: Identifier │ │ "\nCreate a physical [`Grid`](@ref) with float type `FT` and `(NX,NZ)` points.\nThe lateral bounds, `[x₀,x₁)` are set with a 2-tuple `x_bounds` or a single number `LX` which is equivalent to passing `(0, LX)`.\nSimilarly, the vertical bounds `[z₀,z₁]` are set by the 2-tuple `z_bounds` or a height `LZ` equivalent to `(-LZ, 0)`.\n\n# Examples\n```jldoctest\njulia> grid = Grid(256,128,(-1000,1000),(-1,1))\nGrid{Float64}:\n ├── NX: 256\n ├── NZ: 128\n ├─── x: [-1000,1000)\n └─── z: [-1,1]\n```\n```jldoctest\njulia> grid = Grid(Float32,256,128,(-1000,1000),10)\nGrid{Float32}:\n ├── NX: 256\n ├── NZ: 128\n ├─── x: [-1000,1000)\n └─── z: [-10,0]\n```\n" :: Value │ macro_source=112 │ [call] │ macro_source=112 │ Dict{Symbol, Any} :: Value │ macro_source=112 │ :path => "/home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl" :: Value │ macro_source=112 │ :linenumber => 21 :: Value │ macro_source=112 │ :module => SawyerEliassenSolver.Domains :: Value │ macro_source=112 │ [curly] │ │ Union :: Identifier │ scope_layer=1 │ [curly] │ │ Tuple :: Identifier │ scope_layer=1 │ Any :: Identifier │ scope_layer=1 │ Any :: Identifier │ scope_layer=1 │ Any :: Identifier │ scope_layer=1 │ Any :: Identifier │ scope_layer=1 │ Any :: Identifier │ scope_layer=1 │ #1#val :: Identifier │ scope_layer=1 │ [call] │ │ Base.Docs.doc! :: Value │ macro_source=112 │ SawyerEliassenSolver.Domains :: Value │ macro_source=112 │ [call] │ │ Base.Docs.Binding :: Value │ macro_source=112 │ SawyerEliassenSolver.Domains :: Value │ │ [inert] │ jl_source=L65 │ Grid :: Identifier │ │ [call] │ │ Base.Docs.docstr :: Value │ macro_source=112 │ [call] │ │ Core.svec :: Value │ macro_source=112 │ [call] │ │ DocStringExtensions.interpolation :: Value │ macro_source=112 │ TYPEDEF :: Identifier │ scope_layer=1 │ [inert] │ │ [struct] │ │ false :: Value │ │ [curly] │ │ Grid :: Identifier │ │ [<:] │ │ T :: Identifier │ │ SingleOrDouble :: Identifier │ │ [block] │ │ "Number of grid points in ``x``" :: Value │ │ [::] │ │ NX :: Identifier │ │ Int :: Identifier │ │ "Number of grid points in ``z``" :: Value │ │ [::] │ │ NZ :: Identifier │ │ Int :: Identifier │ │ "Lower and upper ``x`` bounds: ``[x₀,x₁)``" :: Value │ │ [::] │ │ x_bounds :: Identifier │ │ [curly] │ │ NTuple :: Identifier │ │ 2 :: Value │ │ T :: Identifier │ │ "Lower and upper ``z`` bounds: ``[z₀,z₁]``" :: Value │ │ [::] │ │ z_bounds :: Identifier │ │ [curly] │ │ NTuple :: Identifier │ │ 2 :: Value │ │ T :: Identifier │ │ [macrocall] │ │ @doc :: Identifier │ │ :(#= /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:21 =#) :: Value │ │ [string] │ │ TYPEDSIGNATURES :: Identifier │ │ "\nCreate a physical [`Grid`](@ref) with float type `FT` and `(NX,NZ)` points.\nThe lateral bounds, `[x₀,x₁)` are set with a 2-tuple `x_bounds` or a single number `LX` which is equivalent to passing `(0, LX)`.\nSimilarly, the vertical bounds `[z₀,z₁]` are set by the 2-tuple `z_bounds` or a height `LZ` equivalent to `(-LZ, 0)`.\n\n# Examples\n```jldoctest\njulia> grid = Grid(256,128,(-1000,1000),(-1,1))\nGrid{Float64}:\n ├── NX: 256\n ├── NZ: 128\n ├─── x: [-1000,1000)\n └─── z: [-1,1]\n```\n```jldoctest\njulia> grid = Grid(Float32,256,128,(-1000,1000),10)\nGrid{Float32}:\n ├── NX: 256\n ├── NZ: 128\n ├─── x: [-1000,1000)\n └─── z: [-10,0]\n```\n" :: Value │ │ [function] │ │ [call] │ │ Grid :: Identifier │ │ FT :: Identifier │ │ NX :: Identifier │ │ NZ :: Identifier │ │ x_bounds :: Identifier │ │ z_bounds :: Identifier │ │ [block] │ │ [||] │ │ [call] │ │ > :: Identifier │ │ NX :: Identifier │ │ 0 :: Value │ │ [call] │ │ throw :: Identifier │ │ [call] │ │ DomainError :: Identifier │ │ NX :: Identifier │ │ "NX must be positive" :: Value │ │ [||] │ │ [call] │ │ > :: Identifier │ │ NZ :: Identifier │ │ 0 :: Value │ │ [call] │ │ throw :: Identifier │ │ [call] │ │ DomainError :: Identifier │ │ NZ :: Identifier │ │ "NZ must be positive" :: Value │ │ [||] │ │ [call] │ │ != :: Identifier │ │ [ref] │ │ x_bounds :: Identifier │ │ 1 :: Value │ │ [ref] │ │ x_bounds :: Identifier │ │ 2 :: Value │ │ [call] │ │ throw :: Identifier │ │ [call] │ │ ArgumentError :: Identifier │ │ "Length (x) of the domain cannot be 0" :: Value │ │ [||] │ │ [call] │ │ != :: Identifier │ │ [ref] │ │ z_bounds :: Identifier │ │ 1 :: Value │ │ [ref] │ │ z_bounds :: Identifier │ │ 2 :: Value │ │ [call] │ │ throw :: Identifier │ │ [call] │ │ ArgumentError :: Identifier │ │ "Length (z) of the domain cannot be 0" :: Value │ │ [return] │ │ [call] │ │ [curly] │ │ new :: Identifier │ │ FT :: Identifier │ │ NX :: Identifier │ │ NZ :: Identifier │ │ x_bounds :: Identifier │ │ z_bounds :: Identifier │ │ "\n\nThe physical grid.\n``x`` is uniformly spaced and periodic with the left boundary at ``x[1]`` and the right boundary at ``x[NX + 1] = x[1]`` as is standard for DFTs.\n``z`` is a standard DCT/DST type II grid -- uniformly spaced interior points with the boundaries at ``z[1/2]`` and ``z[NZ + 1/2]``.\nThe float type of the grid determines the float point precision of the simulation and since we use FFTW is restriced to `Float32` or `Float64`.\n\n# Fields\n" :: Value │ macro_source=112 │ [call] │ │ DocStringExtensions.interpolation :: Value │ macro_source=112 │ TYPEDFIELDS :: Identifier │ scope_layer=1 │ [inert] │ │ [struct] │ │ false :: Value │ │ [curly] │ │ Grid :: Identifier │ │ [<:] │ │ T :: Identifier │ │ SingleOrDouble :: Identifier │ │ [block] │ │ "Number of grid points in ``x``" :: Value │ │ [::] │ │ NX :: Identifier │ │ Int :: Identifier │ │ "Number of grid points in ``z``" :: Value │ │ [::] │ │ NZ :: Identifier │ │ Int :: Identifier │ │ "Lower and upper ``x`` bounds: ``[x₀,x₁)``" :: Value │ │ [::] │ │ x_bounds :: Identifier │ │ [curly] │ │ NTuple :: Identifier │ │ 2 :: Value │ │ T :: Identifier │ │ "Lower and upper ``z`` bounds: ``[z₀,z₁]``" :: Value │ │ [::] │ │ z_bounds :: Identifier │ │ [curly] │ │ NTuple :: Identifier │ │ 2 :: Value │ │ T :: Identifier │ │ [macrocall] │ │ @doc :: Identifier │ │ :(#= /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:21 =#) :: Value │ │ [string] │ │ TYPEDSIGNATURES :: Identifier │ │ "\nCreate a physical [`Grid`](@ref) with float type `FT` and `(NX,NZ)` points.\nThe lateral bounds, `[x₀,x₁)` are set with a 2-tuple `x_bounds` or a single number `LX` which is equivalent to passing `(0, LX)`.\nSimilarly, the vertical bounds `[z₀,z₁]` are set by the 2-tuple `z_bounds` or a height `LZ` equivalent to `(-LZ, 0)`.\n\n# Examples\n```jldoctest\njulia> grid = Grid(256,128,(-1000,1000),(-1,1))\nGrid{Float64}:\n ├── NX: 256\n ├── NZ: 128\n ├─── x: [-1000,1000)\n └─── z: [-1,1]\n```\n```jldoctest\njulia> grid = Grid(Float32,256,128,(-1000,1000),10)\nGrid{Float32}:\n ├── NX: 256\n ├── NZ: 128\n ├─── x: [-1000,1000)\n └─── z: [-10,0]\n```\n" :: Value │ │ [function] │ │ [call] │ │ Grid :: Identifier │ │ FT :: Identifier │ │ NX :: Identifier │ │ NZ :: Identifier │ │ x_bounds :: Identifier │ │ z_bounds :: Identifier │ │ [block] │ │ [||] │ │ [call] │ │ > :: Identifier │ │ NX :: Identifier │ │ 0 :: Value │ │ [call] │ │ throw :: Identifier │ │ [call] │ │ DomainError :: Identifier │ │ NX :: Identifier │ │ "NX must be positive" :: Value │ │ [||] │ │ [call] │ │ > :: Identifier │ │ NZ :: Identifier │ │ 0 :: Value │ │ [call] │ │ throw :: Identifier │ │ [call] │ │ DomainError :: Identifier │ │ NZ :: Identifier │ │ "NZ must be positive" :: Value │ │ [||] │ │ [call] │ │ != :: Identifier │ │ [ref] │ │ x_bounds :: Identifier │ │ 1 :: Value │ │ [ref] │ │ x_bounds :: Identifier │ │ 2 :: Value │ │ [call] │ │ throw :: Identifier │ │ [call] │ │ ArgumentError :: Identifier │ │ "Length (x) of the domain cannot be 0" :: Value │ │ [||] │ │ [call] │ │ != :: Identifier │ │ [ref] │ │ z_bounds :: Identifier │ │ 1 :: Value │ │ [ref] │ │ z_bounds :: Identifier │ │ 2 :: Value │ │ [call] │ │ throw :: Identifier │ │ [call] │ │ ArgumentError :: Identifier │ │ "Length (z) of the domain cannot be 0" :: Value │ │ [return] │ │ [call] │ │ [curly] │ │ new :: Identifier │ │ FT :: Identifier │ │ NX :: Identifier │ │ NZ :: Identifier │ │ x_bounds :: Identifier │ │ z_bounds :: Identifier │ │ "\n" :: Value │ macro_source=112 │ [call] │ │ Dict{Symbol, Any} :: Value │ macro_source=112 │ :path => "/home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl" :: Value │ macro_source=112 │ :linenumber => 1 :: Value │ macro_source=112 │ :module => SawyerEliassenSolver.Domains :: Value │ macro_source=112 │ [call] │ │ Pair :: Value │ macro_source=112 │ [inert] │ │ fields :: Identifier │ │ [call] │ │ Dict{Symbol, Any} :: Value │ macro_source=112 │ [call] │ │ Pair{Symbol, Any} :: Value │ macro_source=112 │ [inert] │ jl_source=L65 │ NX :: Identifier │ │ "Number of grid points in ``x``" :: Value │ macro_source=112 │ [call] │ │ Pair{Symbol, Any} :: Value │ macro_source=112 │ [inert] │ jl_source=L65 │ NZ :: Identifier │ │ "Number of grid points in ``z``" :: Value │ macro_source=112 │ [call] │ │ Pair{Symbol, Any} :: Value │ macro_source=112 │ [inert] │ jl_source=L65 │ x_bounds :: Identifier │ │ "Lower and upper ``x`` bounds: ``[x₀,x₁)``" :: Value │ macro_source=112 │ [call] │ │ Pair{Symbol, Any} :: Value │ macro_source=112 │ [inert] │ jl_source=L65 │ z_bounds :: Identifier │ │ "Lower and upper ``z`` bounds: ``[z₀,z₁]``" :: Value │ macro_source=112 │ [curly] │ │ Union :: Identifier │ scope_layer=1 │ val :: Identifier │ scope_layer=3 │ │ file = "/home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl" │ line = 1 └ mod = SawyerEliassenSolver.Domains ERROR: LoadError: LoweringError: #= /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:21 =# - assignment syntax in structure fields is reserved Expression:  (= #1#val (function (call Grid FT NX NZ x_bounds z_bounds) (block (|| (call > NX 0) (call throw (call DomainError NX "NX must be positive"))) (|| (call > NZ 0) (call throw (call DomainError NZ "NZ must be positive"))) (|| (call != (ref x_bounds 1) (ref x_bounds 2)) (call throw (call ArgumentError "Length (x) of the domain cannot be 0"))) (|| (call != (ref z_bounds 1) (ref z_bounds 2)) (call throw (call ArgumentError "Length (z) of the domain cannot be 0"))) (return (call (curly new FT) NX NZ x_bounds z_bounds))))) Containing expressions:  (block "Number of grid points in ``x``" (:: NX Int) "Number of grid points in ``z``" (:: NZ Int) "Lower and upper ``x`` bounds: ``[x₀,x₁)``" (:: x_bounds (curly NTuple 2 T)) "Lower and upper ``z`` bounds: ``[z₀,z₁]``" (:: z_bounds (curly NTuple 2 T)) (= #1#val (function (call Grid FT NX NZ x_bounds z_bounds) (block (|| (call > NX 0) (call throw (call DomainError NX "NX must be positive"))) (|| (call > NZ 0) (call throw (call DomainError NZ "NZ must be positive"))) (|| (call != (ref x_bounds 1) (ref x_bounds 2)) (call throw (call ArgumentError "Length (x) of the domain cannot be 0"))) (|| (call != (ref z_bounds 1) (ref z_bounds 2)) (call throw (call ArgumentError "Length (z) of the domain cannot be 0"))) (return (call (curly new FT) NX NZ x_bounds z_bounds))))) (call Base.Docs.doc! SawyerEliassenSolver.Domains (call Base.Docs.Binding SawyerEliassenSolver.Domains :Grid) (call Base.Docs.docstr (call Core.svec (call DocStringExtensions.interpolation TYPEDSIGNATURES (inert (function (call Grid FT NX NZ x_bounds z_bounds) (block (|| (call > NX 0) (call throw (call DomainError NX "NX must be positive"))) (|| (call > NZ 0) (call throw (call DomainError NZ "NZ must be positive"))) (|| (call != (ref x_bounds 1) (ref x_bounds 2)) (call throw (call ArgumentError "Length (x) of the domain cannot be 0"))) (|| (call != (ref z_bounds 1) (ref z_bounds 2)) (call throw (call ArgumentError "Length (z) of the domain cannot be 0"))) (return (call (curly new FT) NX NZ x_bounds z_bounds)))))) "\nCreate a physical [`Grid`](@ref) with float type `FT` and `(NX,NZ)` points.\nThe lateral bounds, `[x₀,x₁)` are set with a 2-tuple `x_bounds` or a single number `LX` which is equivalent to passing `(0, LX)`.\nSimilarly, the vertical bounds `[z₀,z₁]` are set by the 2-tuple `z_bounds` or a height `LZ` equivalent to `(-LZ, 0)`.\n\n# Examples\n```jldoctest\njulia> grid = Grid(256,128,(-1000,1000),(-1,1))\nGrid{Float64}:\n ├── NX: 256\n ├── NZ: 128\n ├─── x: [-1000,1000)\n └─── z: [-1,1]\n```\n```jldoctest\njulia> grid = Grid(Float32,256,128,(-1000,1000),10)\nGrid{Float32}:\n ├── NX: 256\n ├── NZ: 128\n ├─── x: [-1000,1000)\n └─── z: [-10,0]\n```\n") (call Dict{Symbol, Any} :path => "/home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl" :linenumber => 21 :module => SawyerEliassenSolver.Domains)) (curly Union (curly Tuple Any Any Any Any Any))) #1#val)  Detailed provenance:  (= #1#val (function (call Grid FT NX NZ x_bounds z_bounds) (block (|| (call > NX 0) (call throw (call DomainError NX "NX must be positive"))) (|| (call > NZ 0) (call throw (call DomainError NZ "NZ must be positive"))) (|| (call != (ref x_bounds 1) (ref x_bounds 2)) (call throw (call ArgumentError "Length (x) of the domain cannot be 0"))) (|| (call != (ref z_bounds 1) (ref z_bounds 2)) (call throw (call ArgumentError "Length (z) of the domain cannot be 0"))) (return (call (curly new FT) NX NZ x_bounds z_bounds)))))  └─ (= #1#val (function (call Grid FT NX NZ x_bounds z_bounds) (block (|| (call > NX 0) (call throw (call DomainError NX "NX must be positive"))) (|| (call > NZ 0) (call throw (call DomainError NZ "NZ must be positive"))) (|| (call != (ref x_bounds 1) (ref x_bounds 2)) (call throw (call ArgumentError "Length (x) of the domain cannot be 0"))) (|| (call != (ref z_bounds 1) (ref z_bounds 2)) (call throw (call ArgumentError "Length (z) of the domain cannot be 0"))) (return (call (curly new FT) NX NZ x_bounds z_bounds)))))  └─ (= #1#val (function (call Grid FT NX NZ x_bounds z_bounds) (block (|| (call > NX 0) (call throw (call DomainError NX "NX must be positive"))) (|| (call > NZ 0) (call throw (call DomainError NZ "NZ must be positive"))) (|| (call != (ref x_bounds 1) (ref x_bounds 2)) (call throw (call ArgumentError "Length (x) of the domain cannot be 0"))) (|| (call != (ref z_bounds 1) (ref z_bounds 2)) (call throw (call ArgumentError "Length (z) of the domain cannot be 0"))) (return (call (curly new FT) NX NZ x_bounds z_bounds)))))  └─ (= #1#val (function (call Grid FT NX NZ x_bounds z_bounds) (block (|| (call > NX 0) (call throw (call DomainError NX "NX must be positive"))) (|| (call > NZ 0) (call throw (call DomainError NZ "NZ must be positive"))) (|| (call != (ref x_bounds 1) (ref x_bounds 2)) (call throw (call ArgumentError "Length (x) of the domain cannot be 0"))) (|| (call != (ref z_bounds 1) (ref z_bounds 2)) (call throw (call ArgumentError "Length (z) of the domain cannot be 0"))) (return (call (curly new FT) NX NZ x_bounds z_bounds)))))  ├─ @ /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:21  └─ (macrocall @doc :(#= /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:1 =#) (string TYPEDEF "\n\nThe physical grid.\n``x`` is uniformly spaced and periodic with the left boundary at ``x[1]`` and the right boundary at ``x[NX + 1] = x[1]`` as is standard for DFTs.\n``z`` is a standard DCT/DST type II grid -- uniformly spaced interior points with the boundaries at ``z[1/2]`` and ``z[NZ + 1/2]``.\nThe float type of the grid determines the float point precision of the simulation and since we use FFTW is restriced to `Float32` or `Float64`.\n\n# Fields\n" TYPEDFIELDS "\n") (struct false (curly Grid (<: T SingleOrDouble)) (block "Number of grid points in ``x``" (:: NX Int) "Number of grid points in ``z``" (:: NZ Int) "Lower and upper ``x`` bounds: ``[x₀,x₁)``" (:: x_bounds (curly NTuple 2 T)) "Lower and upper ``z`` bounds: ``[z₀,z₁]``" (:: z_bounds (curly NTuple 2 T)) (macrocall @doc :(#= /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:21 =#) (string TYPEDSIGNATURES "\nCreate a physical [`Grid`](@ref) with float type `FT` and `(NX,NZ)` points.\nThe lateral bounds, `[x₀,x₁)` are set with a 2-tuple `x_bounds` or a single number `LX` which is equivalent to passing `(0, LX)`.\nSimilarly, the vertical bounds `[z₀,z₁]` are set by the 2-tuple `z_bounds` or a height `LZ` equivalent to `(-LZ, 0)`.\n\n# Examples\n```jldoctest\njulia> grid = Grid(256,128,(-1000,1000),(-1,1))\nGrid{Float64}:\n ├── NX: 256\n ├── NZ: 128\n ├─── x: [-1000,1000)\n └─── z: [-1,1]\n```\n```jldoctest\njulia> grid = Grid(Float32,256,128,(-1000,1000),10)\nGrid{Float32}:\n ├── NX: 256\n ├── NZ: 128\n ├─── x: [-1000,1000)\n └─── z: [-10,0]\n```\n") (function (call Grid FT NX NZ x_bounds z_bounds) (block (|| (call > NX 0) (call throw (call DomainError NX "NX must be positive"))) (|| (call > NZ 0) (call throw (call DomainError NZ "NZ must be positive"))) (|| (call != (ref x_bounds 1) (ref x_bounds 2)) (call throw (call ArgumentError "Length (x) of the domain cannot be 0"))) (|| (call != (ref z_bounds 1) (ref z_bounds 2)) (call throw (call ArgumentError "Length (z) of the domain cannot be 0"))) (return (call (curly new FT) NX NZ x_bounds z_bounds))))))))  └─ @ /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:1  Stacktrace:  [1] _collect_struct_fields(ctx::Base.JuliaLowering.DesugaringContext{Dict{Symbol, Dict{Int64, Any}}}, field_names::Base.JuliaSyntax.SyntaxList{Dict{Symbol, Dict{Int64, Any}}, Vector{Int64}}, field_types::Base.JuliaSyntax.SyntaxList{Dict{Symbol, Dict{Int64, Any}}, Vector{Int64}}, field_attrs::Base.JuliaSyntax.SyntaxList{Dict{Symbol, Dict{Int64, Any}}, Vector{Int64}}, field_docs::Base.JuliaSyntax.SyntaxList{Dict{Symbol, Dict{Int64, Any}}, Vector{Int64}}, inner_defs::Base.JuliaSyntax.SyntaxList{Dict{Symbol, Dict{Int64, Any}}, Vector{Int64}}, exs::Base.JuliaSyntax.SyntaxList{Dict{Symbol, Dict{Int64, Any}}, SubArray{Int64, 1, Vector{Int64}, Tuple{UnitRange{Int64}}, true}})  @ Base.JuliaLowering /source/usr/share/julia/JuliaLowering/src/desugaring.jl:3166  [2] expand_struct_def(ctx::Base.JuliaLowering.DesugaringContext{Dict{Symbol, Dict{Int64, Any}}}, ex::Base.JuliaSyntax.SyntaxTree{Dict{Symbol, Dict{Int64, Any}}}, docs::Nothing)  @ Base.JuliaLowering /source/usr/share/julia/JuliaLowering/src/desugaring.jl:3736  [3] expand_forms_2(ctx::Base.JuliaLowering.DesugaringContext{Dict{Symbol, Dict{Int64, Any}}}, ex::Base.JuliaSyntax.SyntaxTree{Dict{Symbol, Dict{Int64, Any}}}, docs::Nothing)  @ Base.JuliaLowering /source/usr/share/julia/JuliaLowering/src/desugaring.jl:4317  [4] expand_forms_2(ctx::Base.JuliaLowering.DesugaringContext{Dict{Symbol, Dict{Int64, Any}}}, ex::Base.JuliaSyntax.SyntaxTree{Dict{Symbol, Dict{Int64, Any}}})  @ Base.JuliaLowering /source/usr/share/julia/JuliaLowering/src/desugaring.jl:4133  [5] expand_assignment(ctx::Base.JuliaLowering.DesugaringContext{Dict{Symbol, Dict{Int64, Any}}}, ex::Base.JuliaSyntax.SyntaxTree{Dict{Symbol, Dict{Int64, Any}}}, is_const::Bool)  @ Base.JuliaLowering /source/usr/share/julia/JuliaLowering/src/desugaring.jl:1320  [6] expand_assignment(ctx::Base.JuliaLowering.DesugaringContext{Dict{Symbol, Dict{Int64, Any}}}, ex::Base.JuliaSyntax.SyntaxTree{Dict{Symbol, Dict{Int64, Any}}})  @ Base.JuliaLowering /source/usr/share/julia/JuliaLowering/src/desugaring.jl:1270  [7] expand_forms_2(ctx::Base.JuliaLowering.DesugaringContext{Dict{Symbol, Dict{Int64, Any}}}, ex::Base.JuliaSyntax.SyntaxTree{Dict{Symbol, Dict{Int64, Any}}}, docs::Nothing)  @ Base.JuliaLowering /source/usr/share/julia/JuliaLowering/src/desugaring.jl:4177  [8] expand_forms_2(ctx::Base.JuliaLowering.DesugaringContext{Dict{Symbol, Dict{Int64, Any}}}, ex::Base.JuliaSyntax.SyntaxTree{Dict{Symbol, Dict{Int64, Any}}})  @ Base.JuliaLowering /source/usr/share/julia/JuliaLowering/src/desugaring.jl:4133 [inlined]  [9] (::Base.JuliaLowering.var"#expand_forms_2##2#expand_forms_2##3"{Base.JuliaLowering.DesugaringContext{Dict{Symbol, Dict{Int64, Any}}}})(e::Base.JuliaSyntax.SyntaxTree{Dict{Symbol, Dict{Int64, Any}}})  @ Base.JuliaLowering /source/usr/share/julia/JuliaLowering/src/desugaring.jl:4421 [inlined]  [10] mapchildren(f::Base.JuliaLowering.var"#expand_forms_2##2#expand_forms_2##3"{Base.JuliaLowering.DesugaringContext{Dict{Symbol, Dict{Int64, Any}}}}, ctx::Base.JuliaLowering.DesugaringContext{Dict{Symbol, Dict{Int64, Any}}}, ex::Base.JuliaSyntax.SyntaxTree{Dict{Symbol, Dict{Int64, Any}}})  @ Base.JuliaSyntax /source/usr/share/julia/JuliaSyntax/src/porcelain/syntax_graph.jl:707  [11] expand_forms_2(ctx::Base.JuliaLowering.DesugaringContext{Dict{Symbol, Dict{Int64, Any}}}, ex::Base.JuliaSyntax.SyntaxTree{Dict{Symbol, Dict{Int64, Any}}}, docs::Nothing)  @ Base.JuliaLowering /source/usr/share/julia/JuliaLowering/src/desugaring.jl:4421  [12] expand_forms_2(ctx::Base.JuliaLowering.DesugaringContext{Dict{Symbol, Dict{Int64, Any}}}, ex::Base.JuliaSyntax.SyntaxTree{Dict{Symbol, Dict{Int64, Any}}})  @ Base.JuliaLowering /source/usr/share/julia/JuliaLowering/src/desugaring.jl:4133 [inlined]  [13] expand_forms_2(ctx::Base.JuliaLowering.MacroExpansionContext{Dict{Symbol, Dict{Int64, Any}}}, ex::Base.JuliaSyntax.SyntaxTree{Dict{Symbol, Dict{Int64, Any}}})  @ Base.JuliaLowering /source/usr/share/julia/JuliaLowering/src/desugaring.jl:4450  [14] core_lowering_hook(code::Any, mod::Module, file::String, line::UInt64, world::UInt64, _warn::Bool)  @ Base.JuliaLowering /source/usr/share/julia/JuliaLowering/src/hooks.jl:30  [15] include(mapexpr::Function, mod::Module, _path::String)  @ Base Base.jl:327  [16] top-level scope  @ ~/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/Domains.jl:31  [17] include(mapexpr::Function, mod::Module, _path::String)  @ Base Base.jl:327  [18] top-level scope  @ ~/.julia/packages/SawyerEliassenSolver/qwb22/src/SawyerEliassenSolver.jl:10  [19] include(mod::Module, _path::String)  @ Base Base.jl:326  [20] include_package_for_output(pkg::Base.PkgId, input::String, syntax_version::VersionNumber, depot_path::Vector{String}, dl_load_path::Vector{String}, load_path::Vector{String}, concrete_deps::Vector{Pair{Base.PkgId, UInt128}}, source::Nothing)  @ Base loading.jl:3296  [21] top-level scope  @ stdin:5  [22] eval(m::Module, e::Any)  @ Core boot.jl:521  [23] include_string(mapexpr::typeof(identity), mod::Module, code::String, filename::String)  @ Base loading.jl:3132  [24] include_string(m::Module, txt::String, fname::String)  @ Base loading.jl:3142 [inlined]  [25] exec_options(opts::Base.JLOptions)  @ Base client.jl:353  [26] _start()  @ Base client.jl:596 in expression starting at /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/grid.jl:1 in expression starting at /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/Domains/Domains.jl:1 in expression starting at /home/pkgeval/.julia/packages/SawyerEliassenSolver/qwb22/src/SawyerEliassenSolver.jl:1 in expression starting at stdin:5 1 dependency had output during precompilation: ┌ SawyerEliassenSolver │ [Output was shown above] └ ERROR: The following 1 package failed to precompile: SawyerEliassenSolver Failed to precompile SawyerEliassenSolver [4160a140-ed77-4dbe-8316-dcd1d4ea2f4e] to "/home/pkgeval/.julia/compiled/v1.14/SawyerEliassenSolver/jl_GBecQS" (ProcessExited(1)). Loading failed after 86.11s ERROR: LoadError: failed process: Process(`/opt/julia/bin/julia -C native -J/opt/julia/lib/julia/sys.so -g1 --check-bounds=yes --inline=yes --check-bounds=yes --pkgimages=existing -e 'using SawyerEliassenSolver'`, ProcessExited(1)) [1] Stacktrace: [1] pipeline_error(proc::Base.Process) @ Base process.jl:612 [inlined] [2] run(::Cmd; wait::Bool) @ Base process.jl:525 [3] run(::Cmd) @ Base process.jl:522 [4] top-level scope @ /PkgEval.jl/scripts/evaluate.jl:197 [5] include(mod::Module, _path::String) @ Base Base.jl:326 [6] exec_options(opts::Base.JLOptions) @ Base client.jl:355 [7] _start() @ Base client.jl:596 in expression starting at /PkgEval.jl/scripts/evaluate.jl:188 PkgEval failed after 597.15s: package fails to precompile