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import io |
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import time |
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import pytest |
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import networkx as nx |
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class TestGEXF: |
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@classmethod |
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def setup_class(cls): |
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cls.simple_directed_data = """<?xml version="1.0" encoding="UTF-8"?> |
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<gexf xmlns="http://www.gexf.net/1.2draft" version="1.2"> |
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<graph mode="static" defaultedgetype="directed"> |
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<nodes> |
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<node id="0" label="Hello" /> |
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<node id="1" label="Word" /> |
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</nodes> |
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<edges> |
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<edge id="0" source="0" target="1" /> |
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</edges> |
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</graph> |
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</gexf> |
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""" |
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cls.simple_directed_graph = nx.DiGraph() |
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cls.simple_directed_graph.add_node("0", label="Hello") |
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cls.simple_directed_graph.add_node("1", label="World") |
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cls.simple_directed_graph.add_edge("0", "1", id="0") |
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cls.simple_directed_fh = io.BytesIO(cls.simple_directed_data.encode("UTF-8")) |
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cls.attribute_data = """<?xml version="1.0" encoding="UTF-8"?>\ |
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<gexf xmlns="http://www.gexf.net/1.2draft" xmlns:xsi="http://www.w3.\ |
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org/2001/XMLSchema-instance" xsi:schemaLocation="http://www.gexf.net/\ |
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1.2draft http://www.gexf.net/1.2draft/gexf.xsd" version="1.2"> |
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<meta lastmodifieddate="2009-03-20"> |
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<creator>Gephi.org</creator> |
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<description>A Web network</description> |
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</meta> |
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<graph defaultedgetype="directed"> |
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<attributes class="node"> |
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<attribute id="0" title="url" type="string"/> |
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<attribute id="1" title="indegree" type="integer"/> |
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<attribute id="2" title="frog" type="boolean"> |
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<default>true</default> |
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</attribute> |
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</attributes> |
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<nodes> |
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<node id="0" label="Gephi"> |
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<attvalues> |
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<attvalue for="0" value="https://gephi.org"/> |
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<attvalue for="1" value="1"/> |
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<attvalue for="2" value="false"/> |
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</attvalues> |
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</node> |
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<node id="1" label="Webatlas"> |
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<attvalues> |
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<attvalue for="0" value="http://webatlas.fr"/> |
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<attvalue for="1" value="2"/> |
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<attvalue for="2" value="false"/> |
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</attvalues> |
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</node> |
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<node id="2" label="RTGI"> |
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<attvalues> |
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<attvalue for="0" value="http://rtgi.fr"/> |
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<attvalue for="1" value="1"/> |
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<attvalue for="2" value="true"/> |
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</attvalues> |
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</node> |
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<node id="3" label="BarabasiLab"> |
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<attvalues> |
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<attvalue for="0" value="http://barabasilab.com"/> |
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<attvalue for="1" value="1"/> |
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<attvalue for="2" value="true"/> |
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</attvalues> |
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</node> |
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</nodes> |
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<edges> |
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<edge id="0" source="0" target="1" label="foo"/> |
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<edge id="1" source="0" target="2"/> |
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<edge id="2" source="1" target="0"/> |
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<edge id="3" source="2" target="1"/> |
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<edge id="4" source="0" target="3"/> |
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</edges> |
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</graph> |
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</gexf> |
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""" |
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cls.attribute_graph = nx.DiGraph() |
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cls.attribute_graph.graph["node_default"] = {"frog": True} |
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cls.attribute_graph.add_node( |
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"0", label="Gephi", url="https://gephi.org", indegree=1, frog=False |
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) |
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cls.attribute_graph.add_node( |
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"1", label="Webatlas", url="http://webatlas.fr", indegree=2, frog=False |
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) |
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cls.attribute_graph.add_node( |
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"2", label="RTGI", url="http://rtgi.fr", indegree=1, frog=True |
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) |
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cls.attribute_graph.add_node( |
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"3", |
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label="BarabasiLab", |
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url="http://barabasilab.com", |
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indegree=1, |
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frog=True, |
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) |
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cls.attribute_graph.add_edge("0", "1", id="0", label="foo") |
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cls.attribute_graph.add_edge("0", "2", id="1") |
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cls.attribute_graph.add_edge("1", "0", id="2") |
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cls.attribute_graph.add_edge("2", "1", id="3") |
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cls.attribute_graph.add_edge("0", "3", id="4") |
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cls.attribute_fh = io.BytesIO(cls.attribute_data.encode("UTF-8")) |
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cls.simple_undirected_data = """<?xml version="1.0" encoding="UTF-8"?> |
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<gexf xmlns="http://www.gexf.net/1.2draft" version="1.2"> |
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<graph mode="static" defaultedgetype="undirected"> |
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<nodes> |
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<node id="0" label="Hello" /> |
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<node id="1" label="Word" /> |
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</nodes> |
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<edges> |
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<edge id="0" source="0" target="1" /> |
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</edges> |
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</graph> |
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</gexf> |
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""" |
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cls.simple_undirected_graph = nx.Graph() |
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cls.simple_undirected_graph.add_node("0", label="Hello") |
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cls.simple_undirected_graph.add_node("1", label="World") |
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cls.simple_undirected_graph.add_edge("0", "1", id="0") |
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cls.simple_undirected_fh = io.BytesIO( |
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cls.simple_undirected_data.encode("UTF-8") |
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) |
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def test_read_simple_directed_graphml(self): |
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G = self.simple_directed_graph |
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H = nx.read_gexf(self.simple_directed_fh) |
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assert sorted(G.nodes()) == sorted(H.nodes()) |
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assert sorted(G.edges()) == sorted(H.edges()) |
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assert sorted(G.edges(data=True)) == sorted(H.edges(data=True)) |
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self.simple_directed_fh.seek(0) |
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def test_write_read_simple_directed_graphml(self): |
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G = self.simple_directed_graph |
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fh = io.BytesIO() |
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nx.write_gexf(G, fh) |
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fh.seek(0) |
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H = nx.read_gexf(fh) |
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assert sorted(G.nodes()) == sorted(H.nodes()) |
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assert sorted(G.edges()) == sorted(H.edges()) |
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assert sorted(G.edges(data=True)) == sorted(H.edges(data=True)) |
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self.simple_directed_fh.seek(0) |
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def test_read_simple_undirected_graphml(self): |
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G = self.simple_undirected_graph |
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H = nx.read_gexf(self.simple_undirected_fh) |
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assert sorted(G.nodes()) == sorted(H.nodes()) |
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assert sorted(sorted(e) for e in G.edges()) == sorted( |
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sorted(e) for e in H.edges() |
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) |
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self.simple_undirected_fh.seek(0) |
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def test_read_attribute_graphml(self): |
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G = self.attribute_graph |
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H = nx.read_gexf(self.attribute_fh) |
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assert sorted(G.nodes(True)) == sorted(H.nodes(data=True)) |
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ge = sorted(G.edges(data=True)) |
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he = sorted(H.edges(data=True)) |
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for a, b in zip(ge, he): |
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assert a == b |
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self.attribute_fh.seek(0) |
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def test_directed_edge_in_undirected(self): |
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s = """<?xml version="1.0" encoding="UTF-8"?> |
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<gexf xmlns="http://www.gexf.net/1.2draft" version='1.2'> |
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<graph mode="static" defaultedgetype="undirected" name=""> |
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<nodes> |
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<node id="0" label="Hello" /> |
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<node id="1" label="Word" /> |
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</nodes> |
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<edges> |
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<edge id="0" source="0" target="1" type="directed"/> |
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</edges> |
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</graph> |
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</gexf> |
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""" |
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fh = io.BytesIO(s.encode("UTF-8")) |
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pytest.raises(nx.NetworkXError, nx.read_gexf, fh) |
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def test_undirected_edge_in_directed(self): |
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s = """<?xml version="1.0" encoding="UTF-8"?> |
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<gexf xmlns="http://www.gexf.net/1.2draft" version='1.2'> |
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<graph mode="static" defaultedgetype="directed" name=""> |
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<nodes> |
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<node id="0" label="Hello" /> |
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<node id="1" label="Word" /> |
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</nodes> |
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<edges> |
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<edge id="0" source="0" target="1" type="undirected"/> |
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</edges> |
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</graph> |
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</gexf> |
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""" |
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fh = io.BytesIO(s.encode("UTF-8")) |
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pytest.raises(nx.NetworkXError, nx.read_gexf, fh) |
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def test_key_raises(self): |
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s = """<?xml version="1.0" encoding="UTF-8"?> |
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<gexf xmlns="http://www.gexf.net/1.2draft" version='1.2'> |
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<graph mode="static" defaultedgetype="directed" name=""> |
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<nodes> |
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<node id="0" label="Hello"> |
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<attvalues> |
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<attvalue for='0' value='1'/> |
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</attvalues> |
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</node> |
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<node id="1" label="Word" /> |
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</nodes> |
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<edges> |
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<edge id="0" source="0" target="1" type="undirected"/> |
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</edges> |
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</graph> |
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</gexf> |
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""" |
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fh = io.BytesIO(s.encode("UTF-8")) |
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pytest.raises(nx.NetworkXError, nx.read_gexf, fh) |
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def test_relabel(self): |
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s = """<?xml version="1.0" encoding="UTF-8"?> |
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<gexf xmlns="http://www.gexf.net/1.2draft" version='1.2'> |
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<graph mode="static" defaultedgetype="directed" name=""> |
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<nodes> |
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<node id="0" label="Hello" /> |
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<node id="1" label="Word" /> |
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</nodes> |
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<edges> |
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<edge id="0" source="0" target="1"/> |
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</edges> |
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</graph> |
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</gexf> |
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""" |
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fh = io.BytesIO(s.encode("UTF-8")) |
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G = nx.read_gexf(fh, relabel=True) |
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assert sorted(G.nodes()) == ["Hello", "Word"] |
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def test_default_attribute(self): |
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G = nx.Graph() |
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G.add_node(1, label="1", color="green") |
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nx.add_path(G, [0, 1, 2, 3]) |
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G.add_edge(1, 2, foo=3) |
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G.graph["node_default"] = {"color": "yellow"} |
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G.graph["edge_default"] = {"foo": 7} |
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fh = io.BytesIO() |
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nx.write_gexf(G, fh) |
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fh.seek(0) |
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H = nx.read_gexf(fh, node_type=int) |
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assert sorted(G.nodes()) == sorted(H.nodes()) |
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assert sorted(sorted(e) for e in G.edges()) == sorted( |
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sorted(e) for e in H.edges() |
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) |
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del H.graph["mode"] |
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assert G.graph == H.graph |
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def test_serialize_ints_to_strings(self): |
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G = nx.Graph() |
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G.add_node(1, id=7, label=77) |
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fh = io.BytesIO() |
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nx.write_gexf(G, fh) |
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fh.seek(0) |
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H = nx.read_gexf(fh, node_type=int) |
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assert list(H) == [7] |
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assert H.nodes[7]["label"] == "77" |
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def test_write_with_node_attributes(self): |
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G = nx.Graph() |
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G.add_edges_from([(0, 1), (1, 2), (2, 3)]) |
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for i in range(4): |
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G.nodes[i]["id"] = i |
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G.nodes[i]["label"] = i |
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G.nodes[i]["pid"] = i |
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G.nodes[i]["start"] = i |
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G.nodes[i]["end"] = i + 1 |
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expected = f"""<gexf xmlns="http://www.gexf.net/1.2draft" xmlns:xsi\ |
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="http://www.w3.org/2001/XMLSchema-instance" xsi:schemaLocation=\ |
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"http://www.gexf.net/1.2draft http://www.gexf.net/1.2draft/\ |
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gexf.xsd" version="1.2"> |
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<meta lastmodifieddate="{time.strftime('%Y-%m-%d')}"> |
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<creator>NetworkX {nx.__version__}</creator> |
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</meta> |
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<graph defaultedgetype="undirected" mode="dynamic" name="" timeformat="long"> |
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<nodes> |
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<node id="0" label="0" pid="0" start="0" end="1" /> |
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<node id="1" label="1" pid="1" start="1" end="2" /> |
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<node id="2" label="2" pid="2" start="2" end="3" /> |
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<node id="3" label="3" pid="3" start="3" end="4" /> |
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</nodes> |
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<edges> |
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<edge source="0" target="1" id="0" /> |
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<edge source="1" target="2" id="1" /> |
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<edge source="2" target="3" id="2" /> |
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</edges> |
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</graph> |
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</gexf>""" |
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obtained = "\n".join(nx.generate_gexf(G)) |
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assert expected == obtained |
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def test_edge_id_construct(self): |
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G = nx.Graph() |
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G.add_edges_from([(0, 1, {"id": 0}), (1, 2, {"id": 2}), (2, 3)]) |
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expected = f"""<gexf xmlns="http://www.gexf.net/1.2draft" xmlns:xsi\ |
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="http://www.w3.org/2001/XMLSchema-instance" xsi:schemaLocation="http://www.\ |
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gexf.net/1.2draft http://www.gexf.net/1.2draft/gexf.xsd" version="1.2"> |
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<meta lastmodifieddate="{time.strftime('%Y-%m-%d')}"> |
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<creator>NetworkX {nx.__version__}</creator> |
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</meta> |
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<graph defaultedgetype="undirected" mode="static" name=""> |
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<nodes> |
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<node id="0" label="0" /> |
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<node id="1" label="1" /> |
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<node id="2" label="2" /> |
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<node id="3" label="3" /> |
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</nodes> |
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<edges> |
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<edge source="0" target="1" id="0" /> |
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<edge source="1" target="2" id="2" /> |
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<edge source="2" target="3" id="1" /> |
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</edges> |
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</graph> |
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</gexf>""" |
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obtained = "\n".join(nx.generate_gexf(G)) |
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assert expected == obtained |
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def test_numpy_type(self): |
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np = pytest.importorskip("numpy") |
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G = nx.path_graph(4) |
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nx.set_node_attributes(G, {n: n for n in np.arange(4)}, "number") |
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G[0][1]["edge-number"] = np.float64(1.1) |
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expected = f"""<gexf xmlns="http://www.gexf.net/1.2draft"\ |
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xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:schemaLocation\ |
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="http://www.gexf.net/1.2draft http://www.gexf.net/1.2draft/gexf.xsd"\ |
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version="1.2"> |
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<meta lastmodifieddate="{time.strftime('%Y-%m-%d')}"> |
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<creator>NetworkX {nx.__version__}</creator> |
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</meta> |
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<graph defaultedgetype="undirected" mode="static" name=""> |
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<attributes mode="static" class="edge"> |
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<attribute id="1" title="edge-number" type="float" /> |
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</attributes> |
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<attributes mode="static" class="node"> |
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<attribute id="0" title="number" type="int" /> |
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</attributes> |
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<nodes> |
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<node id="0" label="0"> |
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<attvalues> |
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<attvalue for="0" value="0" /> |
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</attvalues> |
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</node> |
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<node id="1" label="1"> |
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<attvalues> |
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<attvalue for="0" value="1" /> |
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</attvalues> |
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</node> |
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<node id="2" label="2"> |
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<attvalues> |
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<attvalue for="0" value="2" /> |
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</attvalues> |
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</node> |
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<node id="3" label="3"> |
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<attvalues> |
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<attvalue for="0" value="3" /> |
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</attvalues> |
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</node> |
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</nodes> |
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<edges> |
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<edge source="0" target="1" id="0"> |
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<attvalues> |
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<attvalue for="1" value="1.1" /> |
|
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</attvalues> |
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</edge> |
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<edge source="1" target="2" id="1" /> |
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<edge source="2" target="3" id="2" /> |
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</edges> |
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</graph> |
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</gexf>""" |
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obtained = "\n".join(nx.generate_gexf(G)) |
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assert expected == obtained |
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def test_bool(self): |
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G = nx.Graph() |
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G.add_node(1, testattr=True) |
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fh = io.BytesIO() |
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nx.write_gexf(G, fh) |
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fh.seek(0) |
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H = nx.read_gexf(fh, node_type=int) |
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assert H.nodes[1]["testattr"] |
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def test_specials(self): |
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from math import isnan |
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inf, nan = float("inf"), float("nan") |
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G = nx.Graph() |
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G.add_node(1, testattr=inf, strdata="inf", key="a") |
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G.add_node(2, testattr=nan, strdata="nan", key="b") |
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G.add_node(3, testattr=-inf, strdata="-inf", key="c") |
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fh = io.BytesIO() |
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nx.write_gexf(G, fh) |
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fh.seek(0) |
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filetext = fh.read() |
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fh.seek(0) |
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H = nx.read_gexf(fh, node_type=int) |
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assert b"INF" in filetext |
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assert b"NaN" in filetext |
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assert b"-INF" in filetext |
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assert H.nodes[1]["testattr"] == inf |
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assert isnan(H.nodes[2]["testattr"]) |
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assert H.nodes[3]["testattr"] == -inf |
|
|
|
|
|
assert H.nodes[1]["strdata"] == "inf" |
|
|
assert H.nodes[2]["strdata"] == "nan" |
|
|
assert H.nodes[3]["strdata"] == "-inf" |
|
|
|
|
|
assert H.nodes[1]["networkx_key"] == "a" |
|
|
assert H.nodes[2]["networkx_key"] == "b" |
|
|
assert H.nodes[3]["networkx_key"] == "c" |
|
|
|
|
|
def test_simple_list(self): |
|
|
G = nx.Graph() |
|
|
list_value = [(1, 2, 3), (9, 1, 2)] |
|
|
G.add_node(1, key=list_value) |
|
|
fh = io.BytesIO() |
|
|
nx.write_gexf(G, fh) |
|
|
fh.seek(0) |
|
|
H = nx.read_gexf(fh, node_type=int) |
|
|
assert H.nodes[1]["networkx_key"] == list_value |
|
|
|
|
|
def test_dynamic_mode(self): |
|
|
G = nx.Graph() |
|
|
G.add_node(1, label="1", color="green") |
|
|
G.graph["mode"] = "dynamic" |
|
|
fh = io.BytesIO() |
|
|
nx.write_gexf(G, fh) |
|
|
fh.seek(0) |
|
|
H = nx.read_gexf(fh, node_type=int) |
|
|
assert sorted(G.nodes()) == sorted(H.nodes()) |
|
|
assert sorted(sorted(e) for e in G.edges()) == sorted( |
|
|
sorted(e) for e in H.edges() |
|
|
) |
|
|
|
|
|
def test_multigraph_with_missing_attributes(self): |
|
|
G = nx.MultiGraph() |
|
|
G.add_node(0, label="1", color="green") |
|
|
G.add_node(1, label="2", color="green") |
|
|
G.add_edge(0, 1, id="0", weight=3, type="undirected", start=0, end=1) |
|
|
G.add_edge(0, 1, id="1", label="foo", start=0, end=1) |
|
|
G.add_edge(0, 1) |
|
|
fh = io.BytesIO() |
|
|
nx.write_gexf(G, fh) |
|
|
fh.seek(0) |
|
|
H = nx.read_gexf(fh, node_type=int) |
|
|
assert sorted(G.nodes()) == sorted(H.nodes()) |
|
|
assert sorted(sorted(e) for e in G.edges()) == sorted( |
|
|
sorted(e) for e in H.edges() |
|
|
) |
|
|
|
|
|
def test_missing_viz_attributes(self): |
|
|
G = nx.Graph() |
|
|
G.add_node(0, label="1", color="green") |
|
|
G.nodes[0]["viz"] = {"size": 54} |
|
|
G.nodes[0]["viz"]["position"] = {"x": 0, "y": 1, "z": 0} |
|
|
G.nodes[0]["viz"]["color"] = {"r": 0, "g": 0, "b": 256} |
|
|
G.nodes[0]["viz"]["shape"] = "http://random.url" |
|
|
G.nodes[0]["viz"]["thickness"] = 2 |
|
|
fh = io.BytesIO() |
|
|
nx.write_gexf(G, fh, version="1.1draft") |
|
|
fh.seek(0) |
|
|
H = nx.read_gexf(fh, node_type=int) |
|
|
assert sorted(G.nodes()) == sorted(H.nodes()) |
|
|
assert sorted(sorted(e) for e in G.edges()) == sorted( |
|
|
sorted(e) for e in H.edges() |
|
|
) |
|
|
|
|
|
|
|
|
|
|
|
fh = io.BytesIO() |
|
|
|
|
|
|
|
|
nx.write_gexf(G, fh, version="1.2draft") |
|
|
fh.seek(0) |
|
|
H = nx.read_gexf(fh, node_type=int) |
|
|
assert H.nodes[0]["viz"]["color"]["a"] == 1.0 |
|
|
|
|
|
|
|
|
G = nx.Graph() |
|
|
G.add_node(0, label="1", color="green") |
|
|
G.nodes[0]["viz"] = {"size": 54} |
|
|
G.nodes[0]["viz"]["position"] = {"x": 0, "y": 1, "z": 0} |
|
|
G.nodes[0]["viz"]["color"] = {"r": 0, "g": 0, "b": 256, "a": 0.5} |
|
|
G.nodes[0]["viz"]["shape"] = "ftp://random.url" |
|
|
G.nodes[0]["viz"]["thickness"] = 2 |
|
|
fh = io.BytesIO() |
|
|
nx.write_gexf(G, fh) |
|
|
fh.seek(0) |
|
|
H = nx.read_gexf(fh, node_type=int) |
|
|
assert sorted(G.nodes()) == sorted(H.nodes()) |
|
|
assert sorted(sorted(e) for e in G.edges()) == sorted( |
|
|
sorted(e) for e in H.edges() |
|
|
) |
|
|
|
|
|
def test_slice_and_spell(self): |
|
|
|
|
|
G = nx.Graph() |
|
|
G.add_node(0, label="1", color="green") |
|
|
G.nodes[0]["spells"] = [(1, 2)] |
|
|
fh = io.BytesIO() |
|
|
nx.write_gexf(G, fh) |
|
|
fh.seek(0) |
|
|
H = nx.read_gexf(fh, node_type=int) |
|
|
assert sorted(G.nodes()) == sorted(H.nodes()) |
|
|
assert sorted(sorted(e) for e in G.edges()) == sorted( |
|
|
sorted(e) for e in H.edges() |
|
|
) |
|
|
|
|
|
G = nx.Graph() |
|
|
G.add_node(0, label="1", color="green") |
|
|
G.nodes[0]["slices"] = [(1, 2)] |
|
|
fh = io.BytesIO() |
|
|
nx.write_gexf(G, fh, version="1.1draft") |
|
|
fh.seek(0) |
|
|
H = nx.read_gexf(fh, node_type=int) |
|
|
assert sorted(G.nodes()) == sorted(H.nodes()) |
|
|
assert sorted(sorted(e) for e in G.edges()) == sorted( |
|
|
sorted(e) for e in H.edges() |
|
|
) |
|
|
|
|
|
def test_add_parent(self): |
|
|
G = nx.Graph() |
|
|
G.add_node(0, label="1", color="green", parents=[1, 2]) |
|
|
fh = io.BytesIO() |
|
|
nx.write_gexf(G, fh) |
|
|
fh.seek(0) |
|
|
H = nx.read_gexf(fh, node_type=int) |
|
|
assert sorted(G.nodes()) == sorted(H.nodes()) |
|
|
assert sorted(sorted(e) for e in G.edges()) == sorted( |
|
|
sorted(e) for e in H.edges() |
|
|
) |
|
|
|