def restore_pid2node(filename): """read a textual PID->int map from stdin and write its binary version to filename """ with open(filename, "wb") as dst: for line in sys.stdin: (str_pid, str_int) = line.split() PidToNodeMap.write_record(dst, str_pid, int(str_int))
def setUpClass(cls): """create reasonably sized (~2 MB) PID->int map to test on-disk DB """ cls.tmpdir = tempfile.mkdtemp(prefix="swh.graph.test.") cls.fname = os.path.join(cls.tmpdir, "pid2int.bin") with open(cls.fname, "wb") as f: for (pid, i) in gen_records(length=10000): PidToNodeMap.write_record(f, pid, i)
def test_update(self): fname2 = self.fname + ".update" shutil.copy(self.fname, fname2) # fresh map copy map2 = PidToNodeMap(fname2, mode="rb+") for (pid, int) in islice(map2, 11): # update the first N items new_int = int + 42 map2[pid] = new_int self.assertEqual(map2[pid], new_int) # check updated value os.unlink(fname2) # tmpdir will be cleaned even if we don't reach this
def write(ctx, map_type, filename): """Write a map to disk sequentially. read from stdin a textual PID->node mapping (for pid2node, or a simple sequence of PIDs for node2pid) and write it to disk in the requested binary map format note that no sorting is applied, so the input should already be sorted as required by the chosen map type (by PID for pid2node, by int for node2pid) """ with open(filename, "wb") as f: if map_type == "pid2node": for line in sys.stdin: (pid, int_str) = line.rstrip().split(maxsplit=1) PidToNodeMap.write_record(f, pid, int(int_str)) elif map_type == "node2pid": for line in sys.stdin: pid = line.rstrip() NodeToPidMap.write_record(f, pid) else: raise ValueError("invalid map type: " + map_type)
def map_lookup(graph, identifiers): """Lookup identifiers using on-disk maps. Depending on the identifier type lookup either a PID into a PID->node (and return the node integer identifier) or, vice-versa, lookup a node integer identifier into a node->PID (and return the PID). The desired behavior is chosen depending on the syntax of each given identifier. Identifiers can be passed either directly on the command line or on standard input, separate by blanks. Logical lines (as returned by readline()) in stdin will be preserved in stdout. """ success = True # no identifiers failed to be looked up pid2node = PidToNodeMap(f"{graph}.{PID2NODE_EXT}") node2pid = NodeToPidMap(f"{graph}.{NODE2PID_EXT}") def lookup(identifier): nonlocal success, pid2node, node2pid is_pid = None try: int(identifier) is_pid = False except ValueError: try: parse_persistent_identifier(identifier) is_pid = True except swh.model.exceptions.ValidationError: success = False logging.error(f'invalid identifier: "{identifier}", skipping') try: if is_pid: return str(pid2node[identifier]) else: return node2pid[int(identifier)] except KeyError: success = False logging.error(f'identifier not found: "{identifier}", skipping') if identifiers: # lookup identifiers passed via CLI for identifier in identifiers: print(lookup(identifier)) else: # lookup identifiers passed via stdin, preserving logical lines for line in sys.stdin: results = [lookup(id) for id in line.rstrip().split()] if results: # might be empty if all IDs on the same line failed print(" ".join(results)) sys.exit(0 if success else 1)
def __enter__(self): self.gateway = JavaGateway.launch_gateway( java_path=None, javaopts=self.config["java_tool_options"].split(), classpath=self.config["classpath"], die_on_exit=True, redirect_stdout=sys.stdout, redirect_stderr=_get_pipe_stderr(), ) self.entry = self.gateway.jvm.org.softwareheritage.graph.Entry() self.entry.load_graph(self.graph_path) self.node2pid = NodeToPidMap(self.graph_path + "." + NODE2PID_EXT) self.pid2node = PidToNodeMap(self.graph_path + "." + PID2NODE_EXT) self.stream_proxy = JavaStreamProxy(self.entry) return self
def setUp(self): self.map = PidToNodeMap(self.fname)
class TestPidToNodeMap(unittest.TestCase): @classmethod def setUpClass(cls): """create reasonably sized (~2 MB) PID->int map to test on-disk DB """ cls.tmpdir = tempfile.mkdtemp(prefix="swh.graph.test.") cls.fname = os.path.join(cls.tmpdir, "pid2int.bin") with open(cls.fname, "wb") as f: for (pid, i) in gen_records(length=10000): PidToNodeMap.write_record(f, pid, i) @classmethod def tearDownClass(cls): shutil.rmtree(cls.tmpdir) def setUp(self): self.map = PidToNodeMap(self.fname) def tearDown(self): self.map.close() def test_lookup(self): for (pid, pos) in MAP_PAIRS: self.assertEqual(self.map[pid], pos) def test_missing(self): with self.assertRaises(KeyError): self.map["swh:1:ori:0101010100000000000000000000000000000000"], with self.assertRaises(KeyError): self.map["swh:1:cnt:0101010100000000000000000000000000000000"], def test_type_error(self): with self.assertRaises(TypeError): self.map[42] with self.assertRaises(TypeError): self.map[1.2] def test_update(self): fname2 = self.fname + ".update" shutil.copy(self.fname, fname2) # fresh map copy map2 = PidToNodeMap(fname2, mode="rb+") for (pid, int) in islice(map2, 11): # update the first N items new_int = int + 42 map2[pid] = new_int self.assertEqual(map2[pid], new_int) # check updated value os.unlink(fname2) # tmpdir will be cleaned even if we don't reach this def test_iter_type(self): for t in PID_TYPES: first_20 = list(islice(self.map.iter_type(t), 20)) k = first_20[0][1] expected = [("swh:1:{}:{:040x}".format(t, i), i) for i in range(k, k + 20)] assert first_20 == expected def test_iter_prefix(self): for t in PID_TYPES: prefix = self.map.iter_prefix("swh:1:{}:00".format(t)) first_20 = list(islice(prefix, 20)) k = first_20[0][1] expected = [("swh:1:{}:{:040x}".format(t, i), i) for i in range(k, k + 20)] assert first_20 == expected
def dump_pid2node(filename): for (pid, int) in PidToNodeMap(filename): print("{}\t{}".format(pid, int))