|
8 | 8 | # No Edges |
9 | 9 | ex = Graph(1) |
10 | 10 | expected_cyclebasis = Array{Int64,1}[] |
11 | | - @testset "no edges" for g in testgraphs(ex) |
| 11 | + @testset "no edges" for g in test_generic_graphs(ex) |
12 | 12 | ex_cyclebasis = @inferred cycle_basis(g) |
13 | 13 | @test isempty(ex_cyclebasis) |
14 | 14 | end |
|
17 | 17 | elist = [(1, 1)] |
18 | 18 | ex = Graph(SimpleEdge.(elist)) |
19 | 19 | expected_cyclebasis = Array{Int64,1}[[1]] |
20 | | - @testset "one self-edge" for g in testgraphs(ex) |
| 20 | + @testset "one self-edge" for g in test_generic_graphs(ex) |
21 | 21 | ex_cyclebasis = cycle_basis(g) |
22 | 22 | evaluate(ex_cyclebasis, expected_cyclebasis) |
23 | 23 | end |
|
26 | 26 | elist = [(1, 2), (2, 3), (3, 4), (4, 1), (1, 5)] |
27 | 27 | ex = Graph(SimpleEdge.(elist)) |
28 | 28 | expected_cyclebasis = Array{Int64,1}[[1, 2, 3, 4]] |
29 | | - @testset "one cycle" for g in testgraphs(ex) |
| 29 | + @testset "one cycle" for g in test_generic_graphs(ex) |
30 | 30 | ex_cyclebasis = cycle_basis(g) |
31 | 31 | evaluate(ex_cyclebasis, expected_cyclebasis) |
32 | 32 | end |
|
35 | 35 | elist = [(1, 2), (1, 3), (2, 3), (2, 4), (3, 4)] |
36 | 36 | ex = Graph(SimpleEdge.(elist)) |
37 | 37 | expected_cyclebasis = Array{Int64,1}[[2, 3, 4], [2, 1, 3]] |
38 | | - @testset "2 of 3 cycles w/ basis" for g in testgraphs(ex) |
| 38 | + @testset "2 of 3 cycles w/ basis" for g in test_generic_graphs(ex) |
39 | 39 | ex_cyclebasis = cycle_basis(g) |
40 | 40 | evaluate(ex_cyclebasis, expected_cyclebasis) |
41 | 41 | end |
|
44 | 44 | elist = [(1, 2), (1, 3), (2, 3), (2, 4), (3, 4), (1, 5), (5, 6), (6, 4)] |
45 | 45 | ex = Graph(SimpleEdge.(elist)) |
46 | 46 | expected_cyclebasis = Array{Int64,1}[[2, 4, 3], [1, 5, 6, 4, 3], [1, 2, 3]] |
47 | | - @testset "root argument" for g in testgraphs(ex) |
| 47 | + @testset "root argument" for g in test_generic_graphs(ex) |
48 | 48 | ex_cyclebasis = @inferred cycle_basis(g, 3) |
49 | 49 | evaluate(ex_cyclebasis, expected_cyclebasis) |
50 | 50 | end |
51 | 51 |
|
52 | 52 | @testset "two isolated cycles" begin |
53 | 53 | ex = blockdiag(cycle_graph(3), cycle_graph(4)) |
54 | 54 | expected_cyclebasis = [[1, 2, 3], [4, 5, 6, 7]] |
55 | | - for g in testgraphs(ex) |
| 55 | + for g in test_generic_graphs(ex) |
56 | 56 | found_cyclebasis = @inferred cycle_basis(g) |
57 | 57 | evaluate(expected_cyclebasis, found_cyclebasis) |
58 | 58 | end |
|
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