Mercurial > repos > public > sbplib_julia
comparison test/SbpOperators/boundaryops/boundary_restriction_test.jl @ 1360:f59228534d3a tooling/benchmarks
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author | Jonatan Werpers <jonatan@werpers.com> |
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date | Sat, 20 May 2023 15:15:22 +0200 |
parents | 11b08b242e48 |
children | 43aaf710463e |
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1321:42738616422e | 1360:f59228534d3a |
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7 using Sbplib.SbpOperators: BoundaryOperator, Stencil | 7 using Sbplib.SbpOperators: BoundaryOperator, Stencil |
8 | 8 |
9 @testset "boundary_restriction" begin | 9 @testset "boundary_restriction" begin |
10 stencil_set = read_stencil_set(sbp_operators_path()*"standard_diagonal.toml"; order = 4) | 10 stencil_set = read_stencil_set(sbp_operators_path()*"standard_diagonal.toml"; order = 4) |
11 e_closure = parse_stencil(stencil_set["e"]["closure"]) | 11 e_closure = parse_stencil(stencil_set["e"]["closure"]) |
12 g_1D = EquidistantGrid(11, 0.0, 1.0) | 12 g_1D = equidistant_grid(11, 0.0, 1.0) |
13 g_2D = EquidistantGrid((11,15), (0.0, 0.0), (1.0,1.0)) | 13 g_2D = equidistant_grid((11,15), (0.0, 0.0), (1.0,1.0)) |
14 | 14 |
15 @testset "boundary_restriction" begin | 15 @testset "boundary_restriction" begin |
16 @testset "1D" begin | 16 @testset "1D" begin |
17 e_l = boundary_restriction(g_1D,e_closure,CartesianBoundary{1,Lower}()) | 17 e_l = boundary_restriction(g_1D,stencil_set,Lower()) |
18 @test e_l == boundary_restriction(g_1D,stencil_set,CartesianBoundary{1,Lower}()) | |
19 @test e_l == BoundaryOperator(g_1D,Stencil{Float64}(e_closure),Lower()) | 18 @test e_l == BoundaryOperator(g_1D,Stencil{Float64}(e_closure),Lower()) |
20 @test e_l isa BoundaryOperator{T,Lower} where T | 19 @test e_l isa BoundaryOperator{T,Lower} where T |
21 @test e_l isa LazyTensor{T,0,1} where T | 20 @test e_l isa LazyTensor{T,0,1} where T |
22 | 21 |
23 e_r = boundary_restriction(g_1D,e_closure,CartesianBoundary{1,Upper}()) | 22 e_r = boundary_restriction(g_1D,stencil_set,Upper()) |
24 @test e_r == boundary_restriction(g_1D,stencil_set,CartesianBoundary{1,Upper}()) | |
25 @test e_r == BoundaryOperator(g_1D,Stencil{Float64}(e_closure),Upper()) | 23 @test e_r == BoundaryOperator(g_1D,Stencil{Float64}(e_closure),Upper()) |
26 @test e_r isa BoundaryOperator{T,Upper} where T | 24 @test e_r isa BoundaryOperator{T,Upper} where T |
27 @test e_r isa LazyTensor{T,0,1} where T | 25 @test e_r isa LazyTensor{T,0,1} where T |
28 end | 26 end |
29 | 27 |
30 @testset "2D" begin | 28 @testset "2D" begin |
31 e_w = boundary_restriction(g_2D,e_closure,CartesianBoundary{1,Upper}()) | 29 e_w = boundary_restriction(g_2D,stencil_set,CartesianBoundary{1,Upper}()) |
32 @test e_w == boundary_restriction(g_2D,stencil_set,CartesianBoundary{1,Upper}()) | |
33 @test e_w isa InflatedTensor | 30 @test e_w isa InflatedTensor |
34 @test e_w isa LazyTensor{T,1,2} where T | 31 @test e_w isa LazyTensor{T,1,2} where T |
35 end | 32 end |
36 end | 33 end |
37 | 34 |
38 @testset "Application" begin | 35 @testset "Application" begin |
39 @testset "1D" begin | 36 @testset "1D" begin |
40 e_l, e_r = boundary_restriction.(Ref(g_1D), Ref(e_closure), boundary_identifiers(g_1D)) | 37 e_l, e_r = boundary_restriction.(Ref(g_1D), Ref(stencil_set), boundary_identifiers(g_1D)) |
41 v = evalOn(g_1D,x->1+x^2) | 38 v = eval_on(g_1D,x->1+x^2) |
42 u = fill(3.124) | 39 u = fill(3.124) |
43 | 40 |
44 @test (e_l*v)[] == v[1] | 41 @test (e_l*v)[] == v[1] |
45 @test (e_r*v)[] == v[end] | 42 @test (e_r*v)[] == v[end] |
46 @test (e_r*v)[1] == v[end] | 43 @test (e_r*v)[1] == v[end] |
47 end | 44 end |
48 | 45 |
49 @testset "2D" begin | 46 @testset "2D" begin |
50 e_w, e_e, e_s, e_n = boundary_restriction.(Ref(g_2D), Ref(e_closure), boundary_identifiers(g_2D)) | 47 e_w, e_e, e_s, e_n = boundary_restriction.(Ref(g_2D), Ref(stencil_set), boundary_identifiers(g_2D)) |
51 v = rand(11, 15) | 48 v = rand(11, 15) |
52 u = fill(3.124) | 49 u = fill(3.124) |
53 | 50 |
54 @test e_w*v == v[1,:] | 51 @test e_w*v == v[1,:] |
55 @test e_e*v == v[end,:] | 52 @test e_e*v == v[end,:] |