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https://github.com/ANL-CEEESA/RELOG.git
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Accelerate tests with Revise.jl
This commit is contained in:
@@ -21,6 +21,7 @@ OrderedCollections = "bac558e1-5e72-5ebc-8fee-abe8a469f55d"
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PackageCompiler = "9b87118b-4619-50d2-8e1e-99f35a4d4d9d"
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PackageCompiler = "9b87118b-4619-50d2-8e1e-99f35a4d4d9d"
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Printf = "de0858da-6303-5e67-8744-51eddeeeb8d7"
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Printf = "de0858da-6303-5e67-8744-51eddeeeb8d7"
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ProgressBars = "49802e3a-d2f1-5c88-81d8-b72133a6f568"
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ProgressBars = "49802e3a-d2f1-5c88-81d8-b72133a6f568"
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Revise = "295af30f-e4ad-537b-8983-00126c2a3abe"
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Shapefile = "8e980c4a-a4fe-5da2-b3a7-4b4b0353a2f4"
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Shapefile = "8e980c4a-a4fe-5da2-b3a7-4b4b0353a2f4"
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Statistics = "10745b16-79ce-11e8-11f9-7d13ad32a3b2"
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Statistics = "10745b16-79ce-11e8-11f9-7d13ad32a3b2"
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StochasticPrograms = "8b8459f2-c380-502b-8633-9aed2d6c2b35"
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StochasticPrograms = "8b8459f2-c380-502b-8633-9aed2d6c2b35"
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@@ -1,11 +0,0 @@
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[ Info: Reading s1.json...
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[ Info: Building graph...
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[ Info: 2 time periods
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[ Info: 6 process nodes
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[ Info: 8 shipping nodes (plant)
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[ Info: 10 shipping nodes (collection)
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[ Info: 38 arcs
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[ Info: Building optimization model...
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[ Info: Optimizing MILP...
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[ Info: Re-optimizing with integer variables fixed...
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[ Info: Extracting solution...
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@@ -3,37 +3,38 @@
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using RELOG
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using RELOG
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@testset "build_graph" begin
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function graph_build_test()
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basedir = dirname(@__FILE__)
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@testset "build_graph" begin
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instance = RELOG.parsefile("$basedir/../../instances/s1.json")
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instance = RELOG.parsefile(fixture("instances/s1.json"))
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graph = RELOG.build_graph(instance)
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graph = RELOG.build_graph(instance)
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process_node_by_location_name =
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process_node_by_location_name =
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Dict(n.location.location_name => n for n in graph.process_nodes)
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Dict(n.location.location_name => n for n in graph.process_nodes)
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@test length(graph.plant_shipping_nodes) == 8
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@test length(graph.plant_shipping_nodes) == 8
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@test length(graph.collection_shipping_nodes) == 10
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@test length(graph.collection_shipping_nodes) == 10
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@test length(graph.process_nodes) == 6
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@test length(graph.process_nodes) == 6
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node = graph.collection_shipping_nodes[1]
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node = graph.collection_shipping_nodes[1]
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@test node.location.name == "C1"
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@test node.location.name == "C1"
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@test length(node.incoming_arcs) == 0
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@test length(node.incoming_arcs) == 0
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@test length(node.outgoing_arcs) == 2
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@test length(node.outgoing_arcs) == 2
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@test node.outgoing_arcs[1].source.location.name == "C1"
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@test node.outgoing_arcs[1].source.location.name == "C1"
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@test node.outgoing_arcs[1].dest.location.plant_name == "F1"
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@test node.outgoing_arcs[1].dest.location.plant_name == "F1"
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@test node.outgoing_arcs[1].dest.location.location_name == "L1"
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@test node.outgoing_arcs[1].dest.location.location_name == "L1"
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@test node.outgoing_arcs[1].values["distance"] == 1095.62
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@test node.outgoing_arcs[1].values["distance"] == 1095.62
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node = process_node_by_location_name["L1"]
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node = process_node_by_location_name["L1"]
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@test node.location.plant_name == "F1"
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@test node.location.plant_name == "F1"
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@test node.location.location_name == "L1"
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@test node.location.location_name == "L1"
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@test length(node.incoming_arcs) == 10
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@test length(node.incoming_arcs) == 10
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@test length(node.outgoing_arcs) == 2
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@test length(node.outgoing_arcs) == 2
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node = process_node_by_location_name["L3"]
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node = process_node_by_location_name["L3"]
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@test node.location.plant_name == "F2"
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@test node.location.plant_name == "F2"
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@test node.location.location_name == "L3"
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@test node.location.location_name == "L3"
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@test length(node.incoming_arcs) == 2
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@test length(node.incoming_arcs) == 2
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@test length(node.outgoing_arcs) == 2
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@test length(node.outgoing_arcs) == 2
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@test length(graph.arcs) == 38
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@test length(graph.arcs) == 38
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end
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end
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end
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@@ -3,51 +3,52 @@
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using RELOG
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using RELOG
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@testset "compress" begin
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function compress_test()
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basedir = dirname(@__FILE__)
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@testset "compress" begin
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instance = RELOG.parsefile("$basedir/../../instances/s1.json")
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instance = RELOG.parsefile(fixture("instances/s1.json"))
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compressed = RELOG._compress(instance)
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compressed = RELOG._compress(instance)
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product_name_to_product = Dict(p.name => p for p in compressed.products)
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product_name_to_product = Dict(p.name => p for p in compressed.products)
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location_name_to_facility = Dict()
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location_name_to_facility = Dict()
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for p in compressed.plants
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for p in compressed.plants
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location_name_to_facility[p.location_name] = p
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location_name_to_facility[p.location_name] = p
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end
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for c in compressed.collection_centers
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location_name_to_facility[c.name] = c
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end
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p1 = product_name_to_product["P1"]
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p2 = product_name_to_product["P2"]
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p3 = product_name_to_product["P3"]
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c1 = location_name_to_facility["C1"]
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l1 = location_name_to_facility["L1"]
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@test compressed.time == 1
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@test compressed.building_period == [1]
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@test p1.name == "P1"
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@test p1.transportation_cost ≈ [0.015]
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@test p1.transportation_energy ≈ [0.115]
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@test p1.transportation_emissions["CO2"] ≈ [0.051]
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@test p1.transportation_emissions["CH4"] ≈ [0.0025]
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@test c1.name == "C1"
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@test c1.amount ≈ [1869.12]
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@test l1.plant_name == "F1"
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@test l1.location_name == "L1"
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@test l1.energy ≈ [0.115]
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@test l1.emissions["CO2"] ≈ [0.051]
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@test l1.emissions["CH4"] ≈ [0.0025]
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@test l1.sizes[1].opening_cost ≈ [500]
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@test l1.sizes[2].opening_cost ≈ [1250]
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@test l1.sizes[1].fixed_operating_cost ≈ [60]
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@test l1.sizes[2].fixed_operating_cost ≈ [60]
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@test l1.sizes[1].variable_operating_cost ≈ [30]
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@test l1.sizes[2].variable_operating_cost ≈ [30]
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@test l1.disposal_limit[p2] ≈ [2.0]
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@test l1.disposal_limit[p3] ≈ [2.0]
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@test l1.disposal_cost[p2] ≈ [-10.0]
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@test l1.disposal_cost[p3] ≈ [-10.0]
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end
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end
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for c in compressed.collection_centers
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location_name_to_facility[c.name] = c
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end
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p1 = product_name_to_product["P1"]
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p2 = product_name_to_product["P2"]
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p3 = product_name_to_product["P3"]
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c1 = location_name_to_facility["C1"]
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l1 = location_name_to_facility["L1"]
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@test compressed.time == 1
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@test compressed.building_period == [1]
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@test p1.name == "P1"
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@test p1.transportation_cost ≈ [0.015]
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@test p1.transportation_energy ≈ [0.115]
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@test p1.transportation_emissions["CO2"] ≈ [0.051]
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@test p1.transportation_emissions["CH4"] ≈ [0.0025]
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@test c1.name == "C1"
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@test c1.amount ≈ [1869.12]
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@test l1.plant_name == "F1"
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@test l1.location_name == "L1"
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@test l1.energy ≈ [0.115]
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@test l1.emissions["CO2"] ≈ [0.051]
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@test l1.emissions["CH4"] ≈ [0.0025]
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@test l1.sizes[1].opening_cost ≈ [500]
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@test l1.sizes[2].opening_cost ≈ [1250]
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@test l1.sizes[1].fixed_operating_cost ≈ [60]
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@test l1.sizes[2].fixed_operating_cost ≈ [60]
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@test l1.sizes[1].variable_operating_cost ≈ [30]
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@test l1.sizes[2].variable_operating_cost ≈ [30]
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@test l1.disposal_limit[p2] ≈ [2.0]
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@test l1.disposal_limit[p3] ≈ [2.0]
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@test l1.disposal_cost[p2] ≈ [-10.0]
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@test l1.disposal_cost[p3] ≈ [-10.0]
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end
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end
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@@ -4,22 +4,24 @@
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using RELOG
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using RELOG
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@testset "geodb_query (2018-us-county)" begin
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function geodb_test()
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region = RELOG.geodb_query("2018-us-county:17043")
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@testset "geodb_query (2018-us-county)" begin
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@test region.centroid.lat == 41.83956
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region = RELOG.geodb_query("2018-us-county:17043")
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@test region.centroid.lon == -88.08857
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@test region.centroid.lat == 41.83956
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@test region.population == 922_921
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@test region.centroid.lon == -88.08857
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end
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@test region.population == 922_921
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end
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# @testset "geodb_query (2018-us-zcta)" begin
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# @testset "geodb_query (2018-us-zcta)" begin
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# region = RELOG.geodb_query("2018-us-zcta:60439")
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# region = RELOG.geodb_query("2018-us-zcta:60439")
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# @test region.centroid.lat == 41.68241
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# @test region.centroid.lat == 41.68241
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# @test region.centroid.lon == -87.98954
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# @test region.centroid.lon == -87.98954
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# end
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# end
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@testset "geodb_query (us-state)" begin
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@testset "geodb_query (us-state)" begin
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region = RELOG.geodb_query("us-state:IL")
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region = RELOG.geodb_query("us-state:IL")
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@test region.centroid.lat == 39.73939
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@test region.centroid.lat == 39.73939
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@test region.centroid.lon == -89.50414
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@test region.centroid.lon == -89.50414
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@test region.population == 12_671_821
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@test region.population == 12_671_821
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end
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end
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end
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@@ -3,91 +3,90 @@
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using RELOG
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using RELOG
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@testset "parse" begin
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function parse_test()
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basedir = dirname(@__FILE__)
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@testset "parse" begin
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instance = RELOG.parsefile("$basedir/../../instances/s1.json")
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instance = RELOG.parsefile(fixture("instances/s1.json"))
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centers = instance.collection_centers
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centers = instance.collection_centers
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plants = instance.plants
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plants = instance.plants
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products = instance.products
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products = instance.products
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location_name_to_plant = Dict(p.location_name => p for p in plants)
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location_name_to_plant = Dict(p.location_name => p for p in plants)
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product_name_to_product = Dict(p.name => p for p in products)
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product_name_to_product = Dict(p.name => p for p in products)
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@test length(centers) == 10
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@test length(centers) == 10
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@test centers[1].name == "C1"
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@test centers[1].name == "C1"
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@test centers[1].latitude == 7
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@test centers[1].latitude == 7
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@test centers[1].latitude == 7
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@test centers[1].latitude == 7
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@test centers[1].longitude == 7
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@test centers[1].longitude == 7
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@test centers[1].amount == [934.56, 934.56]
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@test centers[1].amount == [934.56, 934.56]
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@test centers[1].product.name == "P1"
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@test centers[1].product.name == "P1"
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@test length(plants) == 6
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@test length(plants) == 6
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plant = location_name_to_plant["L1"]
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plant = location_name_to_plant["L1"]
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@test plant.plant_name == "F1"
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@test plant.plant_name == "F1"
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@test plant.location_name == "L1"
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@test plant.location_name == "L1"
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@test plant.input.name == "P1"
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@test plant.input.name == "P1"
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@test plant.latitude == 0
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@test plant.latitude == 0
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@test plant.longitude == 0
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@test plant.longitude == 0
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@test length(plant.sizes) == 2
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@test length(plant.sizes) == 2
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@test plant.sizes[1].capacity == 250
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@test plant.sizes[1].capacity == 250
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@test plant.sizes[1].opening_cost == [500, 500]
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@test plant.sizes[1].opening_cost == [500, 500]
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@test plant.sizes[1].fixed_operating_cost == [30, 30]
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@test plant.sizes[1].fixed_operating_cost == [30, 30]
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@test plant.sizes[1].variable_operating_cost == [30, 30]
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@test plant.sizes[1].variable_operating_cost == [30, 30]
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@test plant.sizes[2].capacity == 1000
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@test plant.sizes[2].capacity == 1000
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@test plant.sizes[2].opening_cost == [1250, 1250]
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@test plant.sizes[2].opening_cost == [1250, 1250]
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@test plant.sizes[2].fixed_operating_cost == [30, 30]
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@test plant.sizes[2].fixed_operating_cost == [30, 30]
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@test plant.sizes[2].variable_operating_cost == [30, 30]
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@test plant.sizes[2].variable_operating_cost == [30, 30]
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p1 = product_name_to_product["P1"]
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p1 = product_name_to_product["P1"]
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@test p1.disposal_limit == [1.0, 1.0]
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@test p1.disposal_limit == [1.0, 1.0]
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@test p1.disposal_cost == [-1000.0, -1000.0]
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@test p1.disposal_cost == [-1000.0, -1000.0]
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p2 = product_name_to_product["P2"]
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p2 = product_name_to_product["P2"]
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@test p2.disposal_limit == [0.0, 0.0]
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@test p2.disposal_limit == [0.0, 0.0]
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@test p2.disposal_cost == [0.0, 0.0]
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@test p2.disposal_cost == [0.0, 0.0]
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p3 = product_name_to_product["P3"]
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p3 = product_name_to_product["P3"]
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@test length(plant.output) == 2
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@test length(plant.output) == 2
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@test plant.output[p2] == 0.2
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@test plant.output[p2] == 0.2
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@test plant.output[p3] == 0.5
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@test plant.output[p3] == 0.5
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@test plant.disposal_limit[p2] == [1, 1]
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@test plant.disposal_limit[p2] == [1, 1]
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@test plant.disposal_limit[p3] == [1, 1]
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@test plant.disposal_limit[p3] == [1, 1]
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@test plant.disposal_cost[p2] == [-10, -10]
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@test plant.disposal_cost[p2] == [-10, -10]
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@test plant.disposal_cost[p3] == [-10, -10]
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@test plant.disposal_cost[p3] == [-10, -10]
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plant = location_name_to_plant["L3"]
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plant = location_name_to_plant["L3"]
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@test plant.location_name == "L3"
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@test plant.location_name == "L3"
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@test plant.input.name == "P2"
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@test plant.input.name == "P2"
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@test plant.latitude == 25
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@test plant.latitude == 25
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@test plant.longitude == 65
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@test plant.longitude == 65
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@test length(plant.sizes) == 2
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@test length(plant.sizes) == 2
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@test plant.sizes[1].capacity == 1000.0
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@test plant.sizes[1].capacity == 1000.0
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@test plant.sizes[1].opening_cost == [3000, 3000]
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@test plant.sizes[1].opening_cost == [3000, 3000]
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@test plant.sizes[1].fixed_operating_cost == [50, 50]
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@test plant.sizes[1].fixed_operating_cost == [50, 50]
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@test plant.sizes[1].variable_operating_cost == [50, 50]
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@test plant.sizes[1].variable_operating_cost == [50, 50]
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@test plant.sizes[1] == plant.sizes[2]
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@test plant.sizes[1] == plant.sizes[2]
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p4 = product_name_to_product["P4"]
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p4 = product_name_to_product["P4"]
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@test plant.output[p3] == 0.05
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@test plant.output[p3] == 0.05
|
||||||
@test plant.output[p4] == 0.8
|
@test plant.output[p4] == 0.8
|
||||||
@test plant.disposal_limit[p3] == [1e8, 1e8]
|
@test plant.disposal_limit[p3] == [1e8, 1e8]
|
||||||
@test plant.disposal_limit[p4] == [0, 0]
|
@test plant.disposal_limit[p4] == [0, 0]
|
||||||
|
end
|
||||||
|
|
||||||
|
@testset "parse (geodb)" begin
|
||||||
|
instance = RELOG.parsefile(fixture("instances/s2.json"))
|
||||||
|
|
||||||
|
centers = instance.collection_centers
|
||||||
|
@test centers[1].name == "C1"
|
||||||
|
@test centers[1].latitude == 41.83956
|
||||||
|
@test centers[1].longitude == -88.08857
|
||||||
|
end
|
||||||
|
|
||||||
|
# @testset "parse (invalid)" begin
|
||||||
|
# @test_throws ErrorException RELOG.parsefile(fixture("s1-wrong-length.json"))
|
||||||
|
# end
|
||||||
end
|
end
|
||||||
|
|
||||||
@testset "parse (geodb)" begin
|
|
||||||
basedir = dirname(@__FILE__)
|
|
||||||
instance = RELOG.parsefile("$basedir/../../instances/s2.json")
|
|
||||||
|
|
||||||
centers = instance.collection_centers
|
|
||||||
@test centers[1].name == "C1"
|
|
||||||
@test centers[1].latitude == 41.83956
|
|
||||||
@test centers[1].longitude == -88.08857
|
|
||||||
end
|
|
||||||
|
|
||||||
# @testset "parse (invalid)" begin
|
|
||||||
# basedir = dirname(@__FILE__)
|
|
||||||
# @test_throws ErrorException RELOG.parsefile("$basedir/../fixtures/s1-wrong-length.json")
|
|
||||||
# end
|
|
||||||
|
|||||||
@@ -3,35 +3,36 @@
|
|||||||
|
|
||||||
using RELOG, HiGHS, JuMP, Printf, JSON, MathOptInterface.FileFormats
|
using RELOG, HiGHS, JuMP, Printf, JSON, MathOptInterface.FileFormats
|
||||||
|
|
||||||
@testset "build" begin
|
function model_build_test()
|
||||||
basedir = dirname(@__FILE__)
|
@testset "build" begin
|
||||||
instance = RELOG.parsefile("$basedir/../../instances/s1.json")
|
instance = RELOG.parsefile(fixture("instances/s1.json"))
|
||||||
graph = RELOG.build_graph(instance)
|
graph = RELOG.build_graph(instance)
|
||||||
model = RELOG.build_model(instance, graph, HiGHS.Optimizer)
|
model = RELOG.build_model(instance, graph, HiGHS.Optimizer)
|
||||||
|
|
||||||
process_node_by_location_name =
|
process_node_by_location_name =
|
||||||
Dict(n.location.location_name => n for n in graph.process_nodes)
|
Dict(n.location.location_name => n for n in graph.process_nodes)
|
||||||
|
|
||||||
shipping_node_by_loc_and_prod_names = Dict(
|
shipping_node_by_loc_and_prod_names = Dict(
|
||||||
(n.location.location_name, n.product.name) => n for n in graph.plant_shipping_nodes
|
(n.location.location_name, n.product.name) => n for n in graph.plant_shipping_nodes
|
||||||
)
|
)
|
||||||
|
|
||||||
@test length(model[1, :open_plant]) == 12
|
@test length(model[1, :open_plant]) == 12
|
||||||
@test length(model[2, :flow]) == 76
|
@test length(model[2, :flow]) == 76
|
||||||
@test length(model[2, :plant_dispose]) == 16
|
@test length(model[2, :plant_dispose]) == 16
|
||||||
@test length(model[2, :capacity]) == 12
|
@test length(model[2, :capacity]) == 12
|
||||||
@test length(model[2, :expansion]) == 12
|
@test length(model[2, :expansion]) == 12
|
||||||
|
|
||||||
# l1 = process_node_by_location_name["L1"]
|
# l1 = process_node_by_location_name["L1"]
|
||||||
# v = model[2, :capacity][l1.index, 1]
|
# v = model[2, :capacity][l1.index, 1]
|
||||||
# @test lower_bound(v) == 0.0
|
# @test lower_bound(v) == 0.0
|
||||||
# @test upper_bound(v) == 1000.0
|
# @test upper_bound(v) == 1000.0
|
||||||
|
|
||||||
# v = model[2, :expansion][l1.index, 1]
|
# v = model[2, :expansion][l1.index, 1]
|
||||||
# @test lower_bound(v) == 0.0
|
# @test lower_bound(v) == 0.0
|
||||||
# @test upper_bound(v) == 750.0
|
# @test upper_bound(v) == 750.0
|
||||||
|
|
||||||
# v = model[2, :plant_dispose][shipping_node_by_loc_and_prod_names["L1", "P2"].index, 1]
|
# v = model[2, :plant_dispose][shipping_node_by_loc_and_prod_names["L1", "P2"].index, 1]
|
||||||
# @test lower_bound(v) == 0.0
|
# @test lower_bound(v) == 0.0
|
||||||
# @test upper_bound(v) == 1.0
|
# @test upper_bound(v) == 1.0
|
||||||
|
end
|
||||||
end
|
end
|
||||||
@@ -5,63 +5,65 @@ using RELOG, JuMP, Printf, JSON, MathOptInterface.FileFormats
|
|||||||
|
|
||||||
basedir = dirname(@__FILE__)
|
basedir = dirname(@__FILE__)
|
||||||
|
|
||||||
@testset "solve (exact)" begin
|
function model_solve_test()
|
||||||
solution = RELOG.solve("$basedir/../../instances/s1.json")
|
@testset "solve (exact)" begin
|
||||||
|
solution = RELOG.solve(fixture("instances/s1.json"))
|
||||||
|
|
||||||
solution_filename = tempname()
|
solution_filename = tempname()
|
||||||
RELOG.write(solution, solution_filename)
|
RELOG.write(solution, solution_filename)
|
||||||
@test isfile(solution_filename)
|
@test isfile(solution_filename)
|
||||||
|
|
||||||
@test "Costs" in keys(solution)
|
@test "Costs" in keys(solution)
|
||||||
@test "Fixed operating (\$)" in keys(solution["Costs"])
|
@test "Fixed operating (\$)" in keys(solution["Costs"])
|
||||||
@test "Transportation (\$)" in keys(solution["Costs"])
|
@test "Transportation (\$)" in keys(solution["Costs"])
|
||||||
@test "Variable operating (\$)" in keys(solution["Costs"])
|
@test "Variable operating (\$)" in keys(solution["Costs"])
|
||||||
@test "Total (\$)" in keys(solution["Costs"])
|
@test "Total (\$)" in keys(solution["Costs"])
|
||||||
|
|
||||||
@test "Plants" in keys(solution)
|
@test "Plants" in keys(solution)
|
||||||
@test "F1" in keys(solution["Plants"])
|
@test "F1" in keys(solution["Plants"])
|
||||||
@test "F2" in keys(solution["Plants"])
|
@test "F2" in keys(solution["Plants"])
|
||||||
@test "F3" in keys(solution["Plants"])
|
@test "F3" in keys(solution["Plants"])
|
||||||
@test "F4" in keys(solution["Plants"])
|
@test "F4" in keys(solution["Plants"])
|
||||||
|
|
||||||
@test "Products" in keys(solution)
|
@test "Products" in keys(solution)
|
||||||
@test "P1" in keys(solution["Products"])
|
@test "P1" in keys(solution["Products"])
|
||||||
@test "C1" in keys(solution["Products"]["P1"])
|
@test "C1" in keys(solution["Products"]["P1"])
|
||||||
@test "Dispose (tonne)" in keys(solution["Products"]["P1"]["C1"])
|
@test "Dispose (tonne)" in keys(solution["Products"]["P1"]["C1"])
|
||||||
|
|
||||||
total_disposal =
|
total_disposal =
|
||||||
sum([loc["Dispose (tonne)"] for loc in values(solution["Products"]["P1"])])
|
sum([loc["Dispose (tonne)"] for loc in values(solution["Products"]["P1"])])
|
||||||
@test total_disposal == [1.0, 1.0]
|
@test total_disposal == [1.0, 1.0]
|
||||||
end
|
end
|
||||||
|
|
||||||
@testset "solve (heuristic)" begin
|
@testset "solve (heuristic)" begin
|
||||||
# Should not crash
|
# Should not crash
|
||||||
solution = RELOG.solve("$basedir/../../instances/s1.json", heuristic = true)
|
solution = RELOG.solve(fixture("instances/s1.json"), heuristic = true)
|
||||||
end
|
end
|
||||||
|
|
||||||
@testset "solve (infeasible)" begin
|
@testset "solve (infeasible)" begin
|
||||||
json = JSON.parsefile("$basedir/../../instances/s1.json")
|
json = JSON.parsefile(fixture("instances/s1.json"))
|
||||||
for (location_name, location_dict) in json["products"]["P1"]["initial amounts"]
|
for (location_name, location_dict) in json["products"]["P1"]["initial amounts"]
|
||||||
location_dict["amount (tonne)"] *= 1000
|
location_dict["amount (tonne)"] *= 1000
|
||||||
|
end
|
||||||
|
@test_throws ErrorException("No solution available") RELOG.solve(RELOG.parse(json))
|
||||||
|
end
|
||||||
|
|
||||||
|
@testset "solve (with storage)" begin
|
||||||
|
basedir = dirname(@__FILE__)
|
||||||
|
filename = "$basedir/../fixtures/storage.json"
|
||||||
|
instance = RELOG.parsefile(filename)
|
||||||
|
@test instance.plants[1].storage_limit == 50.0
|
||||||
|
@test instance.plants[1].storage_cost == [2.0, 1.5, 1.0]
|
||||||
|
|
||||||
|
solution = RELOG.solve(filename)
|
||||||
|
plant_dict = solution["Plants"]["mega plant"]["Chicago"]
|
||||||
|
@test plant_dict["Variable operating cost (\$)"] == [500.0, 0.0, 100.0]
|
||||||
|
@test plant_dict["Process (tonne)"] == [50.0, 0.0, 50.0]
|
||||||
|
@test plant_dict["Storage (tonne)"] == [50.0, 50.0, 0.0]
|
||||||
|
@test plant_dict["Storage cost (\$)"] == [100.0, 75.0, 0.0]
|
||||||
|
|
||||||
|
@test solution["Costs"]["Variable operating (\$)"] == [500.0, 0.0, 100.0]
|
||||||
|
@test solution["Costs"]["Storage (\$)"] == [100.0, 75.0, 0.0]
|
||||||
|
@test solution["Costs"]["Total (\$)"] == [600.0, 75.0, 100.0]
|
||||||
end
|
end
|
||||||
@test_throws ErrorException("No solution available") RELOG.solve(RELOG.parse(json))
|
|
||||||
end
|
|
||||||
|
|
||||||
@testset "solve (with storage)" begin
|
|
||||||
basedir = dirname(@__FILE__)
|
|
||||||
filename = "$basedir/../fixtures/storage.json"
|
|
||||||
instance = RELOG.parsefile(filename)
|
|
||||||
@test instance.plants[1].storage_limit == 50.0
|
|
||||||
@test instance.plants[1].storage_cost == [2.0, 1.5, 1.0]
|
|
||||||
|
|
||||||
solution = RELOG.solve(filename)
|
|
||||||
plant_dict = solution["Plants"]["mega plant"]["Chicago"]
|
|
||||||
@test plant_dict["Variable operating cost (\$)"] == [500.0, 0.0, 100.0]
|
|
||||||
@test plant_dict["Process (tonne)"] == [50.0, 0.0, 50.0]
|
|
||||||
@test plant_dict["Storage (tonne)"] == [50.0, 50.0, 0.0]
|
|
||||||
@test plant_dict["Storage cost (\$)"] == [100.0, 75.0, 0.0]
|
|
||||||
|
|
||||||
@test solution["Costs"]["Variable operating (\$)"] == [500.0, 0.0, 100.0]
|
|
||||||
@test solution["Costs"]["Storage (\$)"] == [100.0, 75.0, 0.0]
|
|
||||||
@test solution["Costs"]["Total (\$)"] == [600.0, 75.0, 100.0]
|
|
||||||
end
|
end
|
||||||
@@ -6,16 +6,18 @@ using RELOG, JSON, GZip
|
|||||||
|
|
||||||
basedir = @__DIR__
|
basedir = @__DIR__
|
||||||
|
|
||||||
@testset "Reports" begin
|
function reports_test()
|
||||||
@testset "from solve" begin
|
@testset "Reports" begin
|
||||||
solution = RELOG.solve("$basedir/../instances/s1.json")
|
@testset "from solve" begin
|
||||||
tmp_filename = tempname()
|
solution = RELOG.solve(fixture("instances/s1.json"))
|
||||||
# The following should not crash
|
tmp_filename = tempname()
|
||||||
RELOG.write_plant_emissions_report(solution, tmp_filename)
|
# The following should not crash
|
||||||
RELOG.write_plant_outputs_report(solution, tmp_filename)
|
RELOG.write_plant_emissions_report(solution, tmp_filename)
|
||||||
RELOG.write_plants_report(solution, tmp_filename)
|
RELOG.write_plant_outputs_report(solution, tmp_filename)
|
||||||
RELOG.write_products_report(solution, tmp_filename)
|
RELOG.write_plants_report(solution, tmp_filename)
|
||||||
RELOG.write_transportation_emissions_report(solution, tmp_filename)
|
RELOG.write_products_report(solution, tmp_filename)
|
||||||
RELOG.write_transportation_report(solution, tmp_filename)
|
RELOG.write_transportation_emissions_report(solution, tmp_filename)
|
||||||
|
RELOG.write_transportation_report(solution, tmp_filename)
|
||||||
|
end
|
||||||
end
|
end
|
||||||
end
|
end
|
||||||
@@ -2,19 +2,46 @@
|
|||||||
# Written by Alinson Santos Xavier <axavier@anl.gov>
|
# Written by Alinson Santos Xavier <axavier@anl.gov>
|
||||||
|
|
||||||
using Test
|
using Test
|
||||||
|
using RELOG
|
||||||
|
using Revise
|
||||||
|
|
||||||
@testset "RELOG" begin
|
includet("instance/compress_test.jl")
|
||||||
@testset "Instance" begin
|
includet("instance/geodb_test.jl")
|
||||||
include("instance/compress_test.jl")
|
includet("instance/parse_test.jl")
|
||||||
include("instance/geodb_test.jl")
|
includet("graph/build_test.jl")
|
||||||
include("instance/parse_test.jl")
|
includet("model/build_test.jl")
|
||||||
|
includet("model/solve_test.jl")
|
||||||
|
includet("reports_test.jl")
|
||||||
|
|
||||||
|
function fixture(path)
|
||||||
|
for candidate in [
|
||||||
|
"fixtures/$path",
|
||||||
|
"test/fixtures/$path"
|
||||||
|
]
|
||||||
|
if isfile(candidate)
|
||||||
|
return candidate
|
||||||
|
end
|
||||||
end
|
end
|
||||||
@testset "Graph" begin
|
error("Fixture not found: $path")
|
||||||
include("graph/build_test.jl")
|
|
||||||
end
|
|
||||||
@testset "Model" begin
|
|
||||||
include("model/build_test.jl")
|
|
||||||
include("model/solve_test.jl")
|
|
||||||
end
|
|
||||||
include("reports_test.jl")
|
|
||||||
end
|
end
|
||||||
|
|
||||||
|
function runtests()
|
||||||
|
@testset "RELOG" begin
|
||||||
|
@testset "Instance" begin
|
||||||
|
compress_test()
|
||||||
|
geodb_test()
|
||||||
|
parse_test()
|
||||||
|
end
|
||||||
|
@testset "Graph" begin
|
||||||
|
graph_build_test()
|
||||||
|
end
|
||||||
|
@testset "Model" begin
|
||||||
|
model_build_test()
|
||||||
|
model_solve_test()
|
||||||
|
end
|
||||||
|
reports_test()
|
||||||
|
end
|
||||||
|
return
|
||||||
|
end
|
||||||
|
|
||||||
|
runtests()
|
||||||
|
|||||||
Reference in New Issue
Block a user