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"""Module to test the KytosGraph in graph.py.""" |
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from itertools import combinations |
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# Core modules to import |
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from kytos.core.link import Link |
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# module under test |
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from tests.unit.test_results import TestResults |
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class TestResultsEdges(TestResults): |
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"""Tests for the graph class. |
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Tests to see if reflexive searches and impossible searches |
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show correct results. |
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""" |
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def test_path1(self): |
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"""Tests paths between all users using unconstrained path alogrithm.""" |
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combos = combinations(["User1", "User2", "User3", "User4"], 2) |
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for point_a, point_b in combos: |
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results = self.get_path(point_a, point_b) |
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self.assertNotEqual(results, []) |
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def test_path2(self): |
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"""Tests paths between all users using constrained path algorithm, |
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with no constraints set.""" |
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combos = combinations(["User1", "User2", "User3", "User4"], 2) |
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for point_a, point_b in combos: |
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results = self.get_path_constrained(point_a, point_b) |
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self.assertNotEqual(results, []) |
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def test_path3(self): |
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"""Tests paths between all users using constrained path algorithm, |
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with the ownership constraint set to B.""" |
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combos = combinations(["User1", "User2", "User3", "User4"], 2) |
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for point_a, point_b in combos: |
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results = self.get_path_constrained( |
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point_a, point_b, base=dict(ownership="B")) |
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for result in results: |
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for path in result["paths"]: |
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self.assertNotIn("S4:1", path) |
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self.assertNotIn("S5:2", path) |
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self.assertNotIn("S4:2", path) |
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self.assertNotIn("User1:2", path) |
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self.assertNotIn("S5:4", path) |
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self.assertNotIn("S6:2", path) |
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self.assertNotIn("S6:5", path) |
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self.assertNotIn("S10:1", path) |
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self.assertNotIn("S8:6", path) |
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self.assertNotIn("S10:2", path) |
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self.assertNotIn("S10:3", path) |
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self.assertNotIn("User2:1", path) |
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def test_path4(self): |
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"""Tests paths between all users using constrained path algorithm, |
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with the reliability constraint set to 3.""" |
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combos = combinations(["User1", "User2", "User3", "User4"], 2) |
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for point_a, point_b in combos: |
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results = self.get_path_constrained( |
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point_a, point_b, base=dict(reliability=3)) |
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for result in results: |
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for path in result["paths"]: |
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self.assertNotIn("S4:1", path) |
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self.assertNotIn("S5:2", path) |
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self.assertNotIn("S5:3", path) |
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self.assertNotIn("S6:1", path) |
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def test_path5(self): |
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"""Tests paths between all users using constrained path algorithm, |
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with the bandwidth contraint set to 100.""" |
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combos = combinations(["User1", "User2", "User3", "User4"], 2) |
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for point_a, point_b in combos: |
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results = self.get_path_constrained( |
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point_a, point_b, base=dict(bandwidth=100)) |
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for result in results: |
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for path in result["paths"]: |
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self.assertNotIn("S3:1", path) |
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self.assertNotIn("S5:1", path) |
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self.assertNotIn("User1:4", path) |
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self.assertNotIn("User4:3", path) |
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def test_path6(self): |
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"""Tests paths between all users using constrained path algorithm, |
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with the delay constraint set to 50.""" |
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combos = combinations(["User1", "User2", "User3", "User4"], 2) |
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for point_a, point_b in combos: |
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results = self.get_path_constrained( |
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point_a, point_b, base=dict(delay=50)) |
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for result in results: |
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for path in result["paths"]: |
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self.assertNotIn("S1:1", path) |
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self.assertNotIn("S2:1", path) |
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self.assertNotIn("S3:1", path) |
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self.assertNotIn("S5:1", path) |
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self.assertNotIn("S4:2", path) |
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self.assertNotIn("User1:2", path) |
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self.assertNotIn("S5:5", path) |
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self.assertNotIn("S8:2", path) |
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self.assertNotIn("S5:6", path) |
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self.assertNotIn("User1:3", path) |
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self.assertNotIn("S6:3", path) |
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self.assertNotIn("S9:1", path) |
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self.assertNotIn("S6:4", path) |
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self.assertNotIn("S9:2", path) |
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self.assertNotIn("S6:5", path) |
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self.assertNotIn("S10:1", path) |
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self.assertNotIn("S8:5", path) |
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self.assertNotIn("S9:4", path) |
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self.assertNotIn("User1:4", path) |
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self.assertNotIn("User4:3", path) |
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def test_path7(self): |
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"""Tests paths between all users using constrained path algorithm, |
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with the delay constraint set to 50, the bandwidth constraint set |
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to 100, the reliability contraint set to 3, and the ownership |
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constraint set to 'B' """ |
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combos = combinations(["User1", "User2", "User3", "User4"], 2) |
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for point_a, point_b in combos: |
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results = self.get_path_constrained( |
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point_a, point_b, base=dict(delay=50, bandwidth=100, |
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reliability=3, |
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ownership="B")) |
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for result in results: |
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for path in result["paths"]: |
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# delay = 50 checks |
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self.assertNotIn("S1:1", path) |
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self.assertNotIn("S2:1", path) |
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self.assertNotIn("S3:1", path) |
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self.assertNotIn("S5:1", path) |
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self.assertNotIn("S4:2", path) |
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self.assertNotIn("User1:2", path) |
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self.assertNotIn("S5:5", path) |
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self.assertNotIn("S8:2", path) |
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self.assertNotIn("S5:6", path) |
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self.assertNotIn("User1:3", path) |
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self.assertNotIn("S6:3", path) |
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self.assertNotIn("S9:1", path) |
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self.assertNotIn("S6:4", path) |
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self.assertNotIn("S9:2", path) |
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self.assertNotIn("S6:5", path) |
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self.assertNotIn("S10:1", path) |
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self.assertNotIn("S8:5", path) |
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self.assertNotIn("S9:4", path) |
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self.assertNotIn("User1:4", path) |
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self.assertNotIn("User4:3", path) |
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# bandwidth = 100 checks |
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self.assertNotIn("S3:1", path) |
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self.assertNotIn("S5:1", path) |
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self.assertNotIn("User1:4", path) |
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self.assertNotIn("User4:3", path) |
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# reliability = 3 checks |
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self.assertNotIn("S4:1", path) |
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self.assertNotIn("S5:2", path) |
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self.assertNotIn("S5:3", path) |
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self.assertNotIn("S6:1", path) |
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# ownership = "B" checks |
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self.assertNotIn("S4:1", path) |
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self.assertNotIn("S5:2", path) |
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self.assertNotIn("S4:2", path) |
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self.assertNotIn("User1:2", path) |
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self.assertNotIn("S5:4", path) |
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self.assertNotIn("S6:2", path) |
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self.assertNotIn("S6:5", path) |
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self.assertNotIn("S10:1", path) |
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self.assertNotIn("S8:6", path) |
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self.assertNotIn("S10:2", path) |
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self.assertNotIn("S10:3", path) |
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self.assertNotIn("User2:1", path) |
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def test_path8(self): |
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"""Tests paths between all users using constrained path algorithm, |
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with the delay constraint set to 50, the bandwidth constraint |
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set to 100, the reliability contraint set to 3, and the ownership |
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constraint set to 'B' |
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Tests conducted with flexibility enabled""" |
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combos = combinations(["User1", "User2", "User3", "User4"], 2) |
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for point_a, point_b in combos: |
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results = self.get_path_constrained( |
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point_a, point_b, flexible=dict(delay=50, bandwidth=100, |
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reliability=3, |
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ownership="B")) |
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for result in results: |
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# delay = 50 checks |
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View Code Duplication |
if "delay" in result["metrics"]: |
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for path in result["paths"]: |
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self.assertNotIn("S1:1", path) |
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self.assertNotIn("S2:1", path) |
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self.assertNotIn("S3:1", path) |
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self.assertNotIn("S5:1", path) |
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self.assertNotIn("S4:2", path) |
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self.assertNotIn("User1:2", path) |
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self.assertNotIn("S5:5", path) |
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self.assertNotIn("S8:2", path) |
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self.assertNotIn("S5:6", path) |
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self.assertNotIn("User1:3", path) |
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self.assertNotIn("S6:3", path) |
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self.assertNotIn("S9:1", path) |
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self.assertNotIn("S6:4", path) |
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self.assertNotIn("S9:2", path) |
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self.assertNotIn("S6:5", path) |
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self.assertNotIn("S10:1", path) |
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self.assertNotIn("S8:5", path) |
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self.assertNotIn("S9:4", path) |
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self.assertNotIn("User1:4", path) |
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self.assertNotIn("User4:3", path) |
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# bandwidth = 100 checks |
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if "bandwidth" in result["metrics"]: |
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for path in result["paths"]: |
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self.assertNotIn("S3:1", path) |
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self.assertNotIn("S5:1", path) |
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self.assertNotIn("User1:4", path) |
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self.assertNotIn("User4:3", path) |
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# reliability = 3 checks |
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if "reliability" in result["metrics"]: |
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for path in result["paths"]: |
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self.assertNotIn("S4:1", path) |
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self.assertNotIn("S5:2", path) |
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self.assertNotIn("S5:3", path) |
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self.assertNotIn("S6:1", path) |
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# ownership = "B" checks |
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if "ownership" in result["metrics"]: |
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for path in result["paths"]: |
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self.assertNotIn("S4:1", path) |
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self.assertNotIn("S5:2", path) |
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self.assertNotIn("S4:2", path) |
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self.assertNotIn("User1:2", path) |
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self.assertNotIn("S5:4", path) |
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self.assertNotIn("S6:2", path) |
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self.assertNotIn("S6:5", path) |
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self.assertNotIn("S10:1", path) |
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self.assertNotIn("S8:6", path) |
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self.assertNotIn("S10:2", path) |
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self.assertNotIn("S10:3", path) |
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self.assertNotIn("User2:1", path) |
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247
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def test_path9(self): |
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"""Tests paths between all users using constrained path algorithm, |
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249
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with the delay constraint set to 50, the bandwidth constraint |
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250
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set to 100, the reliability contraint set to 3, and the ownership |
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251
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constraint set to 'B' |
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252
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253
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Tests conducted with all but ownership flexible""" |
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254
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combos = combinations(["User1", "User2", "User3", "User4"], 2) |
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255
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for point_a, point_b in combos: |
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256
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results = self.get_path_constrained(point_a, point_b, |
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257
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base={"ownership": "B"}, |
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258
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flexible={"delay": 50, |
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259
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"bandwidth": 100, |
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260
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"reliability": 3}) |
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261
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for result in results: |
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262
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# delay = 50 checks |
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263
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View Code Duplication |
if "delay" in result["metrics"]: |
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for path in result["paths"]: |
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self.assertNotIn("S1:1", path) |
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self.assertNotIn("S2:1", path) |
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267
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self.assertNotIn("S3:1", path) |
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268
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self.assertNotIn("S5:1", path) |
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self.assertNotIn("S4:2", path) |
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self.assertNotIn("User1:2", path) |
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self.assertNotIn("S5:5", path) |
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self.assertNotIn("S8:2", path) |
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self.assertNotIn("S5:6", path) |
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self.assertNotIn("User1:3", path) |
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275
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self.assertNotIn("S6:3", path) |
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276
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self.assertNotIn("S9:1", path) |
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self.assertNotIn("S6:4", path) |
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self.assertNotIn("S9:2", path) |
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279
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self.assertNotIn("S6:5", path) |
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280
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self.assertNotIn("S10:1", path) |
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281
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self.assertNotIn("S8:5", path) |
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282
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self.assertNotIn("S9:4", path) |
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283
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self.assertNotIn("User1:4", path) |
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284
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self.assertNotIn("User4:3", path) |
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285
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|
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|
286
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|
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# bandwidth = 100 checks |
|
287
|
|
|
if "bandwidth" in result["metrics"]: |
|
288
|
|
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for path in result["paths"]: |
|
289
|
|
|
self.assertNotIn("S3:1", path) |
|
290
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|
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self.assertNotIn("S5:1", path) |
|
291
|
|
|
self.assertNotIn("User1:4", path) |
|
292
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|
|
self.assertNotIn("User4:3", path) |
|
293
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|
|
|
|
294
|
|
|
# reliability = 3 checks |
|
295
|
|
|
if "reliability" in result["metrics"]: |
|
296
|
|
|
for path in result["paths"]: |
|
297
|
|
|
self.assertNotIn("S4:1", path) |
|
298
|
|
|
self.assertNotIn("S5:2", path) |
|
299
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|
|
self.assertNotIn("S5:3", path) |
|
300
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|
|
self.assertNotIn("S6:1", path) |
|
301
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|
302
|
|
|
# ownership = "B" checks |
|
303
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|
|
self.assertIn("ownership", result["metrics"]) |
|
304
|
|
|
for path in result["paths"]: |
|
305
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|
|
self.assertNotIn("S4:1", path) |
|
306
|
|
|
self.assertNotIn("S5:2", path) |
|
307
|
|
|
self.assertNotIn("S4:2", path) |
|
308
|
|
|
self.assertNotIn("User1:2", path) |
|
309
|
|
|
self.assertNotIn("S5:4", path) |
|
310
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|
|
self.assertNotIn("S6:2", path) |
|
311
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|
|
self.assertNotIn("S6:5", path) |
|
312
|
|
|
self.assertNotIn("S10:1", path) |
|
313
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|
|
self.assertNotIn("S8:6", path) |
|
314
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|
|
self.assertNotIn("S10:2", path) |
|
315
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|
|
self.assertNotIn("S10:3", path) |
|
316
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|
|
self.assertNotIn("User2:1", path) |
|
317
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|
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|
|
318
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|
|
def test_path10(self): |
|
319
|
|
|
"""Tests that TypeError is generated by get_path_constrained |
|
320
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|
|
|
|
321
|
|
|
Tests with ownership using an int type rather than string""" |
|
322
|
|
|
with self.assertRaises(TypeError): |
|
323
|
|
|
self.get_path_constrained( |
|
324
|
|
|
"User1", "User2", base={"ownership": 1}) |
|
325
|
|
|
|
|
326
|
|
|
@staticmethod |
|
327
|
|
|
def generate_topology(): |
|
328
|
|
|
"""Generates a predetermined topology""" |
|
329
|
|
|
switches = {} |
|
330
|
|
|
interfaces = {} |
|
331
|
|
|
links = {} |
|
332
|
|
|
|
|
333
|
|
|
TestResults.create_switch("S1", switches) |
|
334
|
|
|
TestResults.add_interfaces(2, switches["S1"], interfaces) |
|
335
|
|
|
|
|
336
|
|
|
TestResults.create_switch("S2", switches) |
|
337
|
|
|
TestResults.add_interfaces(2, switches["S2"], interfaces) |
|
338
|
|
|
|
|
339
|
|
|
TestResults.create_switch("S3", switches) |
|
340
|
|
|
TestResults.add_interfaces(6, switches["S3"], interfaces) |
|
341
|
|
|
|
|
342
|
|
|
TestResults.create_switch("S4", switches) |
|
343
|
|
|
TestResults.add_interfaces(2, switches["S4"], interfaces) |
|
344
|
|
|
|
|
345
|
|
|
TestResults.create_switch("S5", switches) |
|
346
|
|
|
TestResults.add_interfaces(6, switches["S5"], interfaces) |
|
347
|
|
|
|
|
348
|
|
|
TestResults.create_switch("S6", switches) |
|
349
|
|
|
TestResults.add_interfaces(5, switches["S6"], interfaces) |
|
350
|
|
|
|
|
351
|
|
|
TestResults.create_switch("S7", switches) |
|
352
|
|
|
TestResults.add_interfaces(2, switches["S7"], interfaces) |
|
353
|
|
|
|
|
354
|
|
|
TestResults.create_switch("S8", switches) |
|
355
|
|
|
TestResults.add_interfaces(8, switches["S8"], interfaces) |
|
356
|
|
|
|
|
357
|
|
|
TestResults.create_switch("S9", switches) |
|
358
|
|
|
TestResults.add_interfaces(4, switches["S9"], interfaces) |
|
359
|
|
|
|
|
360
|
|
|
TestResults.create_switch("S10", switches) |
|
361
|
|
|
TestResults.add_interfaces(3, switches["S10"], interfaces) |
|
362
|
|
|
|
|
363
|
|
|
TestResults.create_switch("S11", switches) |
|
364
|
|
|
TestResults.add_interfaces(3, switches["S11"], interfaces) |
|
365
|
|
|
|
|
366
|
|
|
TestResults.create_switch("User1", switches) |
|
367
|
|
|
TestResults.add_interfaces(4, switches["User1"], interfaces) |
|
368
|
|
|
|
|
369
|
|
|
TestResults.create_switch("User2", switches) |
|
370
|
|
|
TestResults.add_interfaces(2, switches["User2"], interfaces) |
|
371
|
|
|
|
|
372
|
|
|
TestResults.create_switch("User3", switches) |
|
373
|
|
|
TestResults.add_interfaces(2, switches["User3"], interfaces) |
|
374
|
|
|
|
|
375
|
|
|
TestResults.create_switch("User4", switches) |
|
376
|
|
|
TestResults.add_interfaces(3, switches["User4"], interfaces) |
|
377
|
|
|
|
|
378
|
|
|
TestResultsEdges._fill_links(links, interfaces) |
|
379
|
|
|
TestResultsEdges._add_metadata_to_links(links) |
|
380
|
|
|
|
|
381
|
|
|
return (switches, links) |
|
382
|
|
|
|
|
383
|
|
|
@staticmethod |
|
384
|
|
|
def _add_metadata_to_links(links): |
|
385
|
|
|
links["S1:1<->S2:1"].extend_metadata( |
|
386
|
|
|
{"reliability": 5, "bandwidth": 100, "delay": 105}) |
|
387
|
|
|
links["S1:2<->User1:1"].extend_metadata( |
|
388
|
|
|
{"reliability": 5, "bandwidth": 100, "delay": 1}) |
|
389
|
|
|
links["S2:2<->User4:1"].extend_metadata( |
|
390
|
|
|
{"reliability": 5, "bandwidth": 100, "delay": 10}) |
|
391
|
|
|
links["S3:1<->S5:1"].extend_metadata( |
|
392
|
|
|
{"reliability": 5, "bandwidth": 10, "delay": 112}) |
|
393
|
|
|
links["S3:2<->S7:1"].extend_metadata( |
|
394
|
|
|
{"reliability": 5, "bandwidth": 100, "delay": 1}) |
|
395
|
|
|
links["S3:3<->S8:1"].extend_metadata( |
|
396
|
|
|
{"reliability": 5, "bandwidth": 100, "delay": 1}) |
|
397
|
|
|
links["S3:4<->S11:1"].extend_metadata( |
|
398
|
|
|
{"reliability": 3, "bandwidth": 100, "delay": 6}) |
|
399
|
|
|
links["S3:5<->User3:1"].extend_metadata( |
|
400
|
|
|
{"reliability": 5, "bandwidth": 100, "delay": 1}) |
|
401
|
|
|
links["S3:6<->User4:2"].extend_metadata( |
|
402
|
|
|
{"reliability": 5, "bandwidth": 100, "delay": 10}) |
|
403
|
|
|
links["S4:1<->S5:2"].extend_metadata( |
|
404
|
|
|
{"reliability": 1, "bandwidth": 100, "delay": 30, |
|
405
|
|
|
"ownership": "A"}) |
|
406
|
|
|
links["S4:2<->User1:2"].extend_metadata( |
|
407
|
|
|
{"reliability": 3, "bandwidth": 100, "delay": 110, |
|
408
|
|
|
"ownership": "A"}) |
|
409
|
|
|
links["S5:3<->S6:1"].extend_metadata( |
|
410
|
|
|
{"reliability": 1, "bandwidth": 100, "delay": 40}) |
|
411
|
|
|
links["S5:4<->S6:2"].extend_metadata( |
|
412
|
|
|
{"reliability": 3, "bandwidth": 100, "delay": 40, |
|
413
|
|
|
"ownership": "A"}) |
|
414
|
|
|
links["S5:5<->S8:2"].extend_metadata( |
|
415
|
|
|
{"reliability": 5, "bandwidth": 100, "delay": 112}) |
|
416
|
|
|
links["S5:6<->User1:3"].extend_metadata( |
|
417
|
|
|
{"reliability": 3, "bandwidth": 100, "delay": 60}) |
|
418
|
|
|
links["S6:3<->S9:1"].extend_metadata( |
|
419
|
|
|
{"reliability": 3, "bandwidth": 100, "delay": 60}) |
|
420
|
|
|
links["S6:4<->S9:2"].extend_metadata( |
|
421
|
|
|
{"reliability": 5, "bandwidth": 100, "delay": 62}) |
|
422
|
|
|
links["S6:5<->S10:1"].extend_metadata( |
|
423
|
|
|
{"bandwidth": 100, "delay": 108, "ownership": "A"}) |
|
424
|
|
|
links["S7:2<->S8:3"].extend_metadata( |
|
425
|
|
|
{"reliability": 5, "bandwidth": 100, "delay": 1}) |
|
426
|
|
|
links["S8:4<->S9:3"].extend_metadata( |
|
427
|
|
|
{"reliability": 3, "bandwidth": 100, "delay": 32}) |
|
428
|
|
|
links["S8:5<->S9:4"].extend_metadata( |
|
429
|
|
|
{"reliability": 3, "bandwidth": 100, "delay": 110}) |
|
430
|
|
|
links["S8:6<->S10:2"].extend_metadata( |
|
431
|
|
|
{"reliability": 5, "bandwidth": 100, "ownership": "A"}) |
|
432
|
|
|
links["S8:7<->S11:2"].extend_metadata( |
|
433
|
|
|
{"reliability": 3, "bandwidth": 100, "delay": 7}) |
|
434
|
|
|
links["S8:8<->User3:2"].extend_metadata( |
|
435
|
|
|
{"reliability": 5, "bandwidth": 100, "delay": 1}) |
|
436
|
|
|
links["S10:3<->User2:1"].extend_metadata( |
|
437
|
|
|
{"reliability": 3, "bandwidth": 100, "delay": 10, |
|
438
|
|
|
"ownership": "A"}) |
|
439
|
|
|
links["S11:3<->User2:2"].extend_metadata( |
|
440
|
|
|
{"reliability": 3, "bandwidth": 100, "delay": 6}) |
|
441
|
|
|
links["User1:4<->User4:3"].extend_metadata( |
|
442
|
|
|
{"reliability": 5, "bandwidth": 10, "delay": 105}) |
|
443
|
|
|
|
|
444
|
|
|
@staticmethod |
|
445
|
|
|
def _fill_links(links, interfaces): |
|
446
|
|
|
links["S1:1<->S2:1"] = Link(interfaces["S1:1"], interfaces["S2:1"]) |
|
447
|
|
|
|
|
448
|
|
|
links["S1:2<->User1:1"] = Link(interfaces["S1:2"], |
|
449
|
|
|
interfaces["User1:1"]) |
|
450
|
|
|
|
|
451
|
|
|
links["S2:2<->User4:1"] = Link(interfaces["S2:2"], |
|
452
|
|
|
interfaces["User4:1"]) |
|
453
|
|
|
|
|
454
|
|
|
links["S3:1<->S5:1"] = Link(interfaces["S3:1"], interfaces["S5:1"]) |
|
455
|
|
|
|
|
456
|
|
|
links["S3:2<->S7:1"] = Link(interfaces["S3:2"], interfaces["S7:1"]) |
|
457
|
|
|
|
|
458
|
|
|
links["S3:3<->S8:1"] = Link(interfaces["S3:3"], interfaces["S8:1"]) |
|
459
|
|
|
|
|
460
|
|
|
links["S3:4<->S11:1"] = Link(interfaces["S3:4"], interfaces["S11:1"]) |
|
461
|
|
|
|
|
462
|
|
|
links["S3:5<->User3:1"] = Link(interfaces["S3:5"], |
|
463
|
|
|
interfaces["User3:1"]) |
|
464
|
|
|
|
|
465
|
|
|
links["S3:6<->User4:2"] = Link(interfaces["S3:6"], |
|
466
|
|
|
interfaces["User4:2"]) |
|
467
|
|
|
|
|
468
|
|
|
links["S4:1<->S5:2"] = Link(interfaces["S4:1"], interfaces["S5:2"]) |
|
469
|
|
|
|
|
470
|
|
|
links["S4:2<->User1:2"] = Link(interfaces["S4:2"], |
|
471
|
|
|
interfaces["User1:2"]) |
|
472
|
|
|
|
|
473
|
|
|
links["S5:3<->S6:1"] = Link(interfaces["S5:3"], interfaces["S6:1"]) |
|
474
|
|
|
|
|
475
|
|
|
links["S5:4<->S6:2"] = Link(interfaces["S5:4"], interfaces["S6:2"]) |
|
476
|
|
|
|
|
477
|
|
|
links["S5:5<->S8:2"] = Link(interfaces["S5:5"], interfaces["S8:2"]) |
|
478
|
|
|
|
|
479
|
|
|
links["S5:6<->User1:3"] = Link(interfaces["S5:6"], |
|
480
|
|
|
interfaces["User1:3"]) |
|
481
|
|
|
|
|
482
|
|
|
links["S6:3<->S9:1"] = Link(interfaces["S6:3"], interfaces["S9:1"]) |
|
483
|
|
|
|
|
484
|
|
|
links["S6:4<->S9:2"] = Link(interfaces["S6:4"], interfaces["S9:2"]) |
|
485
|
|
|
|
|
486
|
|
|
links["S6:5<->S10:1"] = Link(interfaces["S6:5"], interfaces["S10:1"]) |
|
487
|
|
|
|
|
488
|
|
|
links["S7:2<->S8:3"] = Link(interfaces["S7:2"], interfaces["S8:3"]) |
|
489
|
|
|
|
|
490
|
|
|
links["S8:4<->S9:3"] = Link(interfaces["S8:4"], interfaces["S9:3"]) |
|
491
|
|
|
|
|
492
|
|
|
links["S8:5<->S9:4"] = Link(interfaces["S8:5"], interfaces["S9:4"]) |
|
493
|
|
|
|
|
494
|
|
|
links["S8:6<->S10:2"] = Link(interfaces["S8:6"], interfaces["S10:2"]) |
|
495
|
|
|
|
|
496
|
|
|
links["S8:7<->S11:2"] = Link(interfaces["S8:7"], interfaces["S11:2"]) |
|
497
|
|
|
|
|
498
|
|
|
links["S8:8<->User3:2"] = Link(interfaces["S8:8"], |
|
499
|
|
|
interfaces["User3:2"]) |
|
500
|
|
|
|
|
501
|
|
|
links["S10:3<->User2:1"] = Link(interfaces["S10:3"], |
|
502
|
|
|
interfaces["User2:1"]) |
|
503
|
|
|
|
|
504
|
|
|
links["S11:3<->User2:2"] = Link(interfaces["S11:3"], |
|
505
|
|
|
interfaces["User2:2"]) |
|
506
|
|
|
|
|
507
|
|
|
links["User1:4<->User4:3"] = Link(interfaces["User1:4"], |
|
508
|
|
|
interfaces["User4:3"]) |
|
509
|
|
|
|