test_gexf.py 19 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379380381382383384385386387388389390391392393394395396397398399400401402403404405406407408409410411412413414415416417418419420421422423424425426427428429430431432433434435436437438439440441442443444445446447448449450451452453454455456457458459460461462463464465466467468469470471472473474475476477478479480481482483484485486487488489490491492493494495496497498499500501502503504505506507508509510511512513514515516517518519520521522523524525526527528529530531532533534535536537538539540541542543544545546547548549550551552553554555556557
  1. import io
  2. import time
  3. import pytest
  4. import networkx as nx
  5. class TestGEXF:
  6. @classmethod
  7. def setup_class(cls):
  8. cls.simple_directed_data = """<?xml version="1.0" encoding="UTF-8"?>
  9. <gexf xmlns="http://www.gexf.net/1.2draft" version="1.2">
  10. <graph mode="static" defaultedgetype="directed">
  11. <nodes>
  12. <node id="0" label="Hello" />
  13. <node id="1" label="Word" />
  14. </nodes>
  15. <edges>
  16. <edge id="0" source="0" target="1" />
  17. </edges>
  18. </graph>
  19. </gexf>
  20. """
  21. cls.simple_directed_graph = nx.DiGraph()
  22. cls.simple_directed_graph.add_node("0", label="Hello")
  23. cls.simple_directed_graph.add_node("1", label="World")
  24. cls.simple_directed_graph.add_edge("0", "1", id="0")
  25. cls.simple_directed_fh = io.BytesIO(cls.simple_directed_data.encode("UTF-8"))
  26. cls.attribute_data = """<?xml version="1.0" encoding="UTF-8"?>\
  27. <gexf xmlns="http://www.gexf.net/1.2draft" xmlns:xsi="http://www.w3.\
  28. org/2001/XMLSchema-instance" xsi:schemaLocation="http://www.gexf.net/\
  29. 1.2draft http://www.gexf.net/1.2draft/gexf.xsd" version="1.2">
  30. <meta lastmodifieddate="2009-03-20">
  31. <creator>Gephi.org</creator>
  32. <description>A Web network</description>
  33. </meta>
  34. <graph defaultedgetype="directed">
  35. <attributes class="node">
  36. <attribute id="0" title="url" type="string"/>
  37. <attribute id="1" title="indegree" type="integer"/>
  38. <attribute id="2" title="frog" type="boolean">
  39. <default>true</default>
  40. </attribute>
  41. </attributes>
  42. <nodes>
  43. <node id="0" label="Gephi">
  44. <attvalues>
  45. <attvalue for="0" value="https://gephi.org"/>
  46. <attvalue for="1" value="1"/>
  47. <attvalue for="2" value="false"/>
  48. </attvalues>
  49. </node>
  50. <node id="1" label="Webatlas">
  51. <attvalues>
  52. <attvalue for="0" value="http://webatlas.fr"/>
  53. <attvalue for="1" value="2"/>
  54. <attvalue for="2" value="false"/>
  55. </attvalues>
  56. </node>
  57. <node id="2" label="RTGI">
  58. <attvalues>
  59. <attvalue for="0" value="http://rtgi.fr"/>
  60. <attvalue for="1" value="1"/>
  61. <attvalue for="2" value="true"/>
  62. </attvalues>
  63. </node>
  64. <node id="3" label="BarabasiLab">
  65. <attvalues>
  66. <attvalue for="0" value="http://barabasilab.com"/>
  67. <attvalue for="1" value="1"/>
  68. <attvalue for="2" value="true"/>
  69. </attvalues>
  70. </node>
  71. </nodes>
  72. <edges>
  73. <edge id="0" source="0" target="1" label="foo"/>
  74. <edge id="1" source="0" target="2"/>
  75. <edge id="2" source="1" target="0"/>
  76. <edge id="3" source="2" target="1"/>
  77. <edge id="4" source="0" target="3"/>
  78. </edges>
  79. </graph>
  80. </gexf>
  81. """
  82. cls.attribute_graph = nx.DiGraph()
  83. cls.attribute_graph.graph["node_default"] = {"frog": True}
  84. cls.attribute_graph.add_node(
  85. "0", label="Gephi", url="https://gephi.org", indegree=1, frog=False
  86. )
  87. cls.attribute_graph.add_node(
  88. "1", label="Webatlas", url="http://webatlas.fr", indegree=2, frog=False
  89. )
  90. cls.attribute_graph.add_node(
  91. "2", label="RTGI", url="http://rtgi.fr", indegree=1, frog=True
  92. )
  93. cls.attribute_graph.add_node(
  94. "3",
  95. label="BarabasiLab",
  96. url="http://barabasilab.com",
  97. indegree=1,
  98. frog=True,
  99. )
  100. cls.attribute_graph.add_edge("0", "1", id="0", label="foo")
  101. cls.attribute_graph.add_edge("0", "2", id="1")
  102. cls.attribute_graph.add_edge("1", "0", id="2")
  103. cls.attribute_graph.add_edge("2", "1", id="3")
  104. cls.attribute_graph.add_edge("0", "3", id="4")
  105. cls.attribute_fh = io.BytesIO(cls.attribute_data.encode("UTF-8"))
  106. cls.simple_undirected_data = """<?xml version="1.0" encoding="UTF-8"?>
  107. <gexf xmlns="http://www.gexf.net/1.2draft" version="1.2">
  108. <graph mode="static" defaultedgetype="undirected">
  109. <nodes>
  110. <node id="0" label="Hello" />
  111. <node id="1" label="Word" />
  112. </nodes>
  113. <edges>
  114. <edge id="0" source="0" target="1" />
  115. </edges>
  116. </graph>
  117. </gexf>
  118. """
  119. cls.simple_undirected_graph = nx.Graph()
  120. cls.simple_undirected_graph.add_node("0", label="Hello")
  121. cls.simple_undirected_graph.add_node("1", label="World")
  122. cls.simple_undirected_graph.add_edge("0", "1", id="0")
  123. cls.simple_undirected_fh = io.BytesIO(
  124. cls.simple_undirected_data.encode("UTF-8")
  125. )
  126. def test_read_simple_directed_graphml(self):
  127. G = self.simple_directed_graph
  128. H = nx.read_gexf(self.simple_directed_fh)
  129. assert sorted(G.nodes()) == sorted(H.nodes())
  130. assert sorted(G.edges()) == sorted(H.edges())
  131. assert sorted(G.edges(data=True)) == sorted(H.edges(data=True))
  132. self.simple_directed_fh.seek(0)
  133. def test_write_read_simple_directed_graphml(self):
  134. G = self.simple_directed_graph
  135. fh = io.BytesIO()
  136. nx.write_gexf(G, fh)
  137. fh.seek(0)
  138. H = nx.read_gexf(fh)
  139. assert sorted(G.nodes()) == sorted(H.nodes())
  140. assert sorted(G.edges()) == sorted(H.edges())
  141. assert sorted(G.edges(data=True)) == sorted(H.edges(data=True))
  142. self.simple_directed_fh.seek(0)
  143. def test_read_simple_undirected_graphml(self):
  144. G = self.simple_undirected_graph
  145. H = nx.read_gexf(self.simple_undirected_fh)
  146. assert sorted(G.nodes()) == sorted(H.nodes())
  147. assert sorted(sorted(e) for e in G.edges()) == sorted(
  148. sorted(e) for e in H.edges()
  149. )
  150. self.simple_undirected_fh.seek(0)
  151. def test_read_attribute_graphml(self):
  152. G = self.attribute_graph
  153. H = nx.read_gexf(self.attribute_fh)
  154. assert sorted(G.nodes(True)) == sorted(H.nodes(data=True))
  155. ge = sorted(G.edges(data=True))
  156. he = sorted(H.edges(data=True))
  157. for a, b in zip(ge, he):
  158. assert a == b
  159. self.attribute_fh.seek(0)
  160. def test_directed_edge_in_undirected(self):
  161. s = """<?xml version="1.0" encoding="UTF-8"?>
  162. <gexf xmlns="http://www.gexf.net/1.2draft" version='1.2'>
  163. <graph mode="static" defaultedgetype="undirected" name="">
  164. <nodes>
  165. <node id="0" label="Hello" />
  166. <node id="1" label="Word" />
  167. </nodes>
  168. <edges>
  169. <edge id="0" source="0" target="1" type="directed"/>
  170. </edges>
  171. </graph>
  172. </gexf>
  173. """
  174. fh = io.BytesIO(s.encode("UTF-8"))
  175. pytest.raises(nx.NetworkXError, nx.read_gexf, fh)
  176. def test_undirected_edge_in_directed(self):
  177. s = """<?xml version="1.0" encoding="UTF-8"?>
  178. <gexf xmlns="http://www.gexf.net/1.2draft" version='1.2'>
  179. <graph mode="static" defaultedgetype="directed" name="">
  180. <nodes>
  181. <node id="0" label="Hello" />
  182. <node id="1" label="Word" />
  183. </nodes>
  184. <edges>
  185. <edge id="0" source="0" target="1" type="undirected"/>
  186. </edges>
  187. </graph>
  188. </gexf>
  189. """
  190. fh = io.BytesIO(s.encode("UTF-8"))
  191. pytest.raises(nx.NetworkXError, nx.read_gexf, fh)
  192. def test_key_raises(self):
  193. s = """<?xml version="1.0" encoding="UTF-8"?>
  194. <gexf xmlns="http://www.gexf.net/1.2draft" version='1.2'>
  195. <graph mode="static" defaultedgetype="directed" name="">
  196. <nodes>
  197. <node id="0" label="Hello">
  198. <attvalues>
  199. <attvalue for='0' value='1'/>
  200. </attvalues>
  201. </node>
  202. <node id="1" label="Word" />
  203. </nodes>
  204. <edges>
  205. <edge id="0" source="0" target="1" type="undirected"/>
  206. </edges>
  207. </graph>
  208. </gexf>
  209. """
  210. fh = io.BytesIO(s.encode("UTF-8"))
  211. pytest.raises(nx.NetworkXError, nx.read_gexf, fh)
  212. def test_relabel(self):
  213. s = """<?xml version="1.0" encoding="UTF-8"?>
  214. <gexf xmlns="http://www.gexf.net/1.2draft" version='1.2'>
  215. <graph mode="static" defaultedgetype="directed" name="">
  216. <nodes>
  217. <node id="0" label="Hello" />
  218. <node id="1" label="Word" />
  219. </nodes>
  220. <edges>
  221. <edge id="0" source="0" target="1"/>
  222. </edges>
  223. </graph>
  224. </gexf>
  225. """
  226. fh = io.BytesIO(s.encode("UTF-8"))
  227. G = nx.read_gexf(fh, relabel=True)
  228. assert sorted(G.nodes()) == ["Hello", "Word"]
  229. def test_default_attribute(self):
  230. G = nx.Graph()
  231. G.add_node(1, label="1", color="green")
  232. nx.add_path(G, [0, 1, 2, 3])
  233. G.add_edge(1, 2, foo=3)
  234. G.graph["node_default"] = {"color": "yellow"}
  235. G.graph["edge_default"] = {"foo": 7}
  236. fh = io.BytesIO()
  237. nx.write_gexf(G, fh)
  238. fh.seek(0)
  239. H = nx.read_gexf(fh, node_type=int)
  240. assert sorted(G.nodes()) == sorted(H.nodes())
  241. assert sorted(sorted(e) for e in G.edges()) == sorted(
  242. sorted(e) for e in H.edges()
  243. )
  244. # Reading a gexf graph always sets mode attribute to either
  245. # 'static' or 'dynamic'. Remove the mode attribute from the
  246. # read graph for the sake of comparing remaining attributes.
  247. del H.graph["mode"]
  248. assert G.graph == H.graph
  249. def test_serialize_ints_to_strings(self):
  250. G = nx.Graph()
  251. G.add_node(1, id=7, label=77)
  252. fh = io.BytesIO()
  253. nx.write_gexf(G, fh)
  254. fh.seek(0)
  255. H = nx.read_gexf(fh, node_type=int)
  256. assert list(H) == [7]
  257. assert H.nodes[7]["label"] == "77"
  258. def test_write_with_node_attributes(self):
  259. # Addresses #673.
  260. G = nx.Graph()
  261. G.add_edges_from([(0, 1), (1, 2), (2, 3)])
  262. for i in range(4):
  263. G.nodes[i]["id"] = i
  264. G.nodes[i]["label"] = i
  265. G.nodes[i]["pid"] = i
  266. G.nodes[i]["start"] = i
  267. G.nodes[i]["end"] = i + 1
  268. expected = f"""<gexf xmlns="http://www.gexf.net/1.2draft" xmlns:xsi\
  269. ="http://www.w3.org/2001/XMLSchema-instance" xsi:schemaLocation=\
  270. "http://www.gexf.net/1.2draft http://www.gexf.net/1.2draft/\
  271. gexf.xsd" version="1.2">
  272. <meta lastmodifieddate="{time.strftime('%Y-%m-%d')}">
  273. <creator>NetworkX {nx.__version__}</creator>
  274. </meta>
  275. <graph defaultedgetype="undirected" mode="dynamic" name="" timeformat="long">
  276. <nodes>
  277. <node id="0" label="0" pid="0" start="0" end="1" />
  278. <node id="1" label="1" pid="1" start="1" end="2" />
  279. <node id="2" label="2" pid="2" start="2" end="3" />
  280. <node id="3" label="3" pid="3" start="3" end="4" />
  281. </nodes>
  282. <edges>
  283. <edge source="0" target="1" id="0" />
  284. <edge source="1" target="2" id="1" />
  285. <edge source="2" target="3" id="2" />
  286. </edges>
  287. </graph>
  288. </gexf>"""
  289. obtained = "\n".join(nx.generate_gexf(G))
  290. assert expected == obtained
  291. def test_edge_id_construct(self):
  292. G = nx.Graph()
  293. G.add_edges_from([(0, 1, {"id": 0}), (1, 2, {"id": 2}), (2, 3)])
  294. expected = f"""<gexf xmlns="http://www.gexf.net/1.2draft" xmlns:xsi\
  295. ="http://www.w3.org/2001/XMLSchema-instance" xsi:schemaLocation="http://www.\
  296. gexf.net/1.2draft http://www.gexf.net/1.2draft/gexf.xsd" version="1.2">
  297. <meta lastmodifieddate="{time.strftime('%Y-%m-%d')}">
  298. <creator>NetworkX {nx.__version__}</creator>
  299. </meta>
  300. <graph defaultedgetype="undirected" mode="static" name="">
  301. <nodes>
  302. <node id="0" label="0" />
  303. <node id="1" label="1" />
  304. <node id="2" label="2" />
  305. <node id="3" label="3" />
  306. </nodes>
  307. <edges>
  308. <edge source="0" target="1" id="0" />
  309. <edge source="1" target="2" id="2" />
  310. <edge source="2" target="3" id="1" />
  311. </edges>
  312. </graph>
  313. </gexf>"""
  314. obtained = "\n".join(nx.generate_gexf(G))
  315. assert expected == obtained
  316. def test_numpy_type(self):
  317. np = pytest.importorskip("numpy")
  318. G = nx.path_graph(4)
  319. nx.set_node_attributes(G, {n: n for n in np.arange(4)}, "number")
  320. G[0][1]["edge-number"] = np.float64(1.1)
  321. expected = f"""<gexf xmlns="http://www.gexf.net/1.2draft"\
  322. xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:schemaLocation\
  323. ="http://www.gexf.net/1.2draft http://www.gexf.net/1.2draft/gexf.xsd"\
  324. version="1.2">
  325. <meta lastmodifieddate="{time.strftime('%Y-%m-%d')}">
  326. <creator>NetworkX {nx.__version__}</creator>
  327. </meta>
  328. <graph defaultedgetype="undirected" mode="static" name="">
  329. <attributes mode="static" class="edge">
  330. <attribute id="1" title="edge-number" type="float" />
  331. </attributes>
  332. <attributes mode="static" class="node">
  333. <attribute id="0" title="number" type="int" />
  334. </attributes>
  335. <nodes>
  336. <node id="0" label="0">
  337. <attvalues>
  338. <attvalue for="0" value="0" />
  339. </attvalues>
  340. </node>
  341. <node id="1" label="1">
  342. <attvalues>
  343. <attvalue for="0" value="1" />
  344. </attvalues>
  345. </node>
  346. <node id="2" label="2">
  347. <attvalues>
  348. <attvalue for="0" value="2" />
  349. </attvalues>
  350. </node>
  351. <node id="3" label="3">
  352. <attvalues>
  353. <attvalue for="0" value="3" />
  354. </attvalues>
  355. </node>
  356. </nodes>
  357. <edges>
  358. <edge source="0" target="1" id="0">
  359. <attvalues>
  360. <attvalue for="1" value="1.1" />
  361. </attvalues>
  362. </edge>
  363. <edge source="1" target="2" id="1" />
  364. <edge source="2" target="3" id="2" />
  365. </edges>
  366. </graph>
  367. </gexf>"""
  368. obtained = "\n".join(nx.generate_gexf(G))
  369. assert expected == obtained
  370. def test_bool(self):
  371. G = nx.Graph()
  372. G.add_node(1, testattr=True)
  373. fh = io.BytesIO()
  374. nx.write_gexf(G, fh)
  375. fh.seek(0)
  376. H = nx.read_gexf(fh, node_type=int)
  377. assert H.nodes[1]["testattr"]
  378. # Test for NaN, INF and -INF
  379. def test_specials(self):
  380. from math import isnan
  381. inf, nan = float("inf"), float("nan")
  382. G = nx.Graph()
  383. G.add_node(1, testattr=inf, strdata="inf", key="a")
  384. G.add_node(2, testattr=nan, strdata="nan", key="b")
  385. G.add_node(3, testattr=-inf, strdata="-inf", key="c")
  386. fh = io.BytesIO()
  387. nx.write_gexf(G, fh)
  388. fh.seek(0)
  389. filetext = fh.read()
  390. fh.seek(0)
  391. H = nx.read_gexf(fh, node_type=int)
  392. assert b"INF" in filetext
  393. assert b"NaN" in filetext
  394. assert b"-INF" in filetext
  395. assert H.nodes[1]["testattr"] == inf
  396. assert isnan(H.nodes[2]["testattr"])
  397. assert H.nodes[3]["testattr"] == -inf
  398. assert H.nodes[1]["strdata"] == "inf"
  399. assert H.nodes[2]["strdata"] == "nan"
  400. assert H.nodes[3]["strdata"] == "-inf"
  401. assert H.nodes[1]["networkx_key"] == "a"
  402. assert H.nodes[2]["networkx_key"] == "b"
  403. assert H.nodes[3]["networkx_key"] == "c"
  404. def test_simple_list(self):
  405. G = nx.Graph()
  406. list_value = [(1, 2, 3), (9, 1, 2)]
  407. G.add_node(1, key=list_value)
  408. fh = io.BytesIO()
  409. nx.write_gexf(G, fh)
  410. fh.seek(0)
  411. H = nx.read_gexf(fh, node_type=int)
  412. assert H.nodes[1]["networkx_key"] == list_value
  413. def test_dynamic_mode(self):
  414. G = nx.Graph()
  415. G.add_node(1, label="1", color="green")
  416. G.graph["mode"] = "dynamic"
  417. fh = io.BytesIO()
  418. nx.write_gexf(G, fh)
  419. fh.seek(0)
  420. H = nx.read_gexf(fh, node_type=int)
  421. assert sorted(G.nodes()) == sorted(H.nodes())
  422. assert sorted(sorted(e) for e in G.edges()) == sorted(
  423. sorted(e) for e in H.edges()
  424. )
  425. def test_multigraph_with_missing_attributes(self):
  426. G = nx.MultiGraph()
  427. G.add_node(0, label="1", color="green")
  428. G.add_node(1, label="2", color="green")
  429. G.add_edge(0, 1, id="0", weight=3, type="undirected", start=0, end=1)
  430. G.add_edge(0, 1, id="1", label="foo", start=0, end=1)
  431. G.add_edge(0, 1)
  432. fh = io.BytesIO()
  433. nx.write_gexf(G, fh)
  434. fh.seek(0)
  435. H = nx.read_gexf(fh, node_type=int)
  436. assert sorted(G.nodes()) == sorted(H.nodes())
  437. assert sorted(sorted(e) for e in G.edges()) == sorted(
  438. sorted(e) for e in H.edges()
  439. )
  440. def test_missing_viz_attributes(self):
  441. G = nx.Graph()
  442. G.add_node(0, label="1", color="green")
  443. G.nodes[0]["viz"] = {"size": 54}
  444. G.nodes[0]["viz"]["position"] = {"x": 0, "y": 1, "z": 0}
  445. G.nodes[0]["viz"]["color"] = {"r": 0, "g": 0, "b": 256}
  446. G.nodes[0]["viz"]["shape"] = "http://random.url"
  447. G.nodes[0]["viz"]["thickness"] = 2
  448. fh = io.BytesIO()
  449. nx.write_gexf(G, fh, version="1.1draft")
  450. fh.seek(0)
  451. H = nx.read_gexf(fh, node_type=int)
  452. assert sorted(G.nodes()) == sorted(H.nodes())
  453. assert sorted(sorted(e) for e in G.edges()) == sorted(
  454. sorted(e) for e in H.edges()
  455. )
  456. # Test missing alpha value for version >draft1.1 - set default alpha value
  457. # to 1.0 instead of `None` when writing for better general compatibility
  458. fh = io.BytesIO()
  459. # G.nodes[0]["viz"]["color"] does not have an alpha value explicitly defined
  460. # so the default is used instead
  461. nx.write_gexf(G, fh, version="1.2draft")
  462. fh.seek(0)
  463. H = nx.read_gexf(fh, node_type=int)
  464. assert H.nodes[0]["viz"]["color"]["a"] == 1.0
  465. # Second graph for the other branch
  466. G = nx.Graph()
  467. G.add_node(0, label="1", color="green")
  468. G.nodes[0]["viz"] = {"size": 54}
  469. G.nodes[0]["viz"]["position"] = {"x": 0, "y": 1, "z": 0}
  470. G.nodes[0]["viz"]["color"] = {"r": 0, "g": 0, "b": 256, "a": 0.5}
  471. G.nodes[0]["viz"]["shape"] = "ftp://random.url"
  472. G.nodes[0]["viz"]["thickness"] = 2
  473. fh = io.BytesIO()
  474. nx.write_gexf(G, fh)
  475. fh.seek(0)
  476. H = nx.read_gexf(fh, node_type=int)
  477. assert sorted(G.nodes()) == sorted(H.nodes())
  478. assert sorted(sorted(e) for e in G.edges()) == sorted(
  479. sorted(e) for e in H.edges()
  480. )
  481. def test_slice_and_spell(self):
  482. # Test spell first, so version = 1.2
  483. G = nx.Graph()
  484. G.add_node(0, label="1", color="green")
  485. G.nodes[0]["spells"] = [(1, 2)]
  486. fh = io.BytesIO()
  487. nx.write_gexf(G, fh)
  488. fh.seek(0)
  489. H = nx.read_gexf(fh, node_type=int)
  490. assert sorted(G.nodes()) == sorted(H.nodes())
  491. assert sorted(sorted(e) for e in G.edges()) == sorted(
  492. sorted(e) for e in H.edges()
  493. )
  494. G = nx.Graph()
  495. G.add_node(0, label="1", color="green")
  496. G.nodes[0]["slices"] = [(1, 2)]
  497. fh = io.BytesIO()
  498. nx.write_gexf(G, fh, version="1.1draft")
  499. fh.seek(0)
  500. H = nx.read_gexf(fh, node_type=int)
  501. assert sorted(G.nodes()) == sorted(H.nodes())
  502. assert sorted(sorted(e) for e in G.edges()) == sorted(
  503. sorted(e) for e in H.edges()
  504. )
  505. def test_add_parent(self):
  506. G = nx.Graph()
  507. G.add_node(0, label="1", color="green", parents=[1, 2])
  508. fh = io.BytesIO()
  509. nx.write_gexf(G, fh)
  510. fh.seek(0)
  511. H = nx.read_gexf(fh, node_type=int)
  512. assert sorted(G.nodes()) == sorted(H.nodes())
  513. assert sorted(sorted(e) for e in G.edges()) == sorted(
  514. sorted(e) for e in H.edges()
  515. )