test_p2p_daemon.py 13 KB

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  1. import asyncio
  2. import multiprocessing as mp
  3. import subprocess
  4. from contextlib import closing
  5. from functools import partial
  6. from typing import List
  7. import numpy as np
  8. import pytest
  9. from multiaddr import Multiaddr
  10. from hivemind.p2p import P2P, P2PDaemonError, P2PHandlerError
  11. from hivemind.proto import dht_pb2, test_pb2
  12. from hivemind.utils.networking import get_free_port
  13. from hivemind.utils.serializer import MSGPackSerializer
  14. def is_process_running(pid: int) -> bool:
  15. return subprocess.run(["ps", "-p", str(pid)], stdout=subprocess.DEVNULL, stderr=subprocess.DEVNULL).returncode == 0
  16. async def replicate_if_needed(p2p: P2P, replicate: bool) -> P2P:
  17. return await P2P.replicate(p2p.daemon_listen_maddr) if replicate else p2p
  18. @pytest.mark.asyncio
  19. async def test_daemon_killed_on_del():
  20. p2p_daemon = await P2P.create()
  21. child_pid = p2p_daemon._child.pid
  22. assert is_process_running(child_pid)
  23. await p2p_daemon.shutdown()
  24. assert not is_process_running(child_pid)
  25. @pytest.mark.asyncio
  26. async def test_startup_error_message():
  27. with pytest.raises(P2PDaemonError, match=r"(?i)Failed to connect to bootstrap peers"):
  28. await P2P.create(
  29. initial_peers=[f"/ip4/127.0.0.1/tcp/{get_free_port()}/p2p/QmdaK4LUeQaKhqSFPRu9N7MvXUEWDxWwtCvPrS444tCgd1"]
  30. )
  31. with pytest.raises(P2PDaemonError, match=r"Daemon failed to start in .+ seconds"):
  32. await P2P.create(startup_timeout=0.01) # Test that startup_timeout works
  33. @pytest.mark.parametrize(
  34. "host_maddrs",
  35. [
  36. [Multiaddr("/ip4/127.0.0.1/tcp/0")],
  37. [Multiaddr("/ip4/127.0.0.1/udp/0/quic")],
  38. [Multiaddr("/ip4/127.0.0.1/tcp/0"), Multiaddr("/ip4/127.0.0.1/udp/0/quic")],
  39. ],
  40. )
  41. @pytest.mark.asyncio
  42. async def test_transports(host_maddrs: List[Multiaddr]):
  43. server = await P2P.create(quic=True, host_maddrs=host_maddrs)
  44. peers = await server.list_peers()
  45. assert len(peers) == 0
  46. client = await P2P.create(quic=True, host_maddrs=host_maddrs, initial_peers=await server.get_visible_maddrs())
  47. await client.wait_for_at_least_n_peers(1)
  48. peers = await client.list_peers()
  49. assert len({p.peer_id for p in peers}) == 1
  50. peers = await server.list_peers()
  51. assert len({p.peer_id for p in peers}) == 1
  52. @pytest.mark.asyncio
  53. async def test_daemon_replica_does_not_affect_primary():
  54. p2p_daemon = await P2P.create()
  55. p2p_replica = await P2P.replicate(p2p_daemon.daemon_listen_maddr)
  56. child_pid = p2p_daemon._child.pid
  57. assert is_process_running(child_pid)
  58. await p2p_replica.shutdown()
  59. assert is_process_running(child_pid)
  60. await p2p_daemon.shutdown()
  61. assert not is_process_running(child_pid)
  62. @pytest.mark.asyncio
  63. async def test_unary_handler_edge_cases():
  64. p2p = await P2P.create()
  65. p2p_replica = await P2P.replicate(p2p.daemon_listen_maddr)
  66. async def square_handler(data: test_pb2.TestRequest, context):
  67. return test_pb2.TestResponse(number=data.number**2)
  68. await p2p.add_protobuf_handler("square", square_handler, test_pb2.TestRequest)
  69. # try adding a duplicate handler
  70. with pytest.raises(P2PDaemonError):
  71. await p2p.add_protobuf_handler("square", square_handler, test_pb2.TestRequest)
  72. # try adding a duplicate handler from replicated p2p
  73. with pytest.raises(P2PDaemonError):
  74. await p2p_replica.add_protobuf_handler("square", square_handler, test_pb2.TestRequest)
  75. # try dialing yourself
  76. with pytest.raises(P2PDaemonError):
  77. await p2p_replica.call_protobuf_handler(
  78. p2p.peer_id, "square", test_pb2.TestRequest(number=41), test_pb2.TestResponse
  79. )
  80. @pytest.mark.parametrize(
  81. "should_cancel,replicate",
  82. [
  83. (True, False),
  84. (True, True),
  85. (False, False),
  86. (False, True),
  87. ],
  88. )
  89. @pytest.mark.asyncio
  90. async def test_call_protobuf_handler(should_cancel, replicate, handle_name="handle"):
  91. handler_cancelled = False
  92. server_primary = await P2P.create()
  93. server = await replicate_if_needed(server_primary, replicate)
  94. async def ping_handler(request, context):
  95. try:
  96. await asyncio.sleep(2)
  97. except asyncio.CancelledError:
  98. nonlocal handler_cancelled
  99. handler_cancelled = True
  100. return dht_pb2.PingResponse(peer=dht_pb2.NodeInfo(node_id=server.peer_id.to_bytes()), available=True)
  101. server_pid = server_primary._child.pid
  102. await server.add_protobuf_handler(handle_name, ping_handler, dht_pb2.PingRequest)
  103. assert is_process_running(server_pid)
  104. client_primary = await P2P.create(initial_peers=await server.get_visible_maddrs())
  105. client = await replicate_if_needed(client_primary, replicate)
  106. client_pid = client_primary._child.pid
  107. assert is_process_running(client_pid)
  108. await client.wait_for_at_least_n_peers(1)
  109. ping_request = dht_pb2.PingRequest(peer=dht_pb2.NodeInfo(node_id=client.peer_id.to_bytes()), validate=True)
  110. expected_response = dht_pb2.PingResponse(peer=dht_pb2.NodeInfo(node_id=server.peer_id.to_bytes()), available=True)
  111. if should_cancel:
  112. call_task = asyncio.create_task(
  113. client.call_protobuf_handler(server.peer_id, handle_name, ping_request, dht_pb2.PingResponse)
  114. )
  115. await asyncio.sleep(0.25)
  116. call_task.cancel()
  117. await asyncio.sleep(0.25)
  118. assert handler_cancelled
  119. else:
  120. actual_response = await client.call_protobuf_handler(
  121. server.peer_id, handle_name, ping_request, dht_pb2.PingResponse
  122. )
  123. assert actual_response == expected_response
  124. assert not handler_cancelled
  125. await server.shutdown()
  126. await server_primary.shutdown()
  127. assert not is_process_running(server_pid)
  128. await client_primary.shutdown()
  129. assert not is_process_running(client_pid)
  130. @pytest.mark.asyncio
  131. async def test_call_protobuf_handler_error(handle_name="handle"):
  132. async def error_handler(request, context):
  133. raise ValueError("boom")
  134. server = await P2P.create()
  135. server_pid = server._child.pid
  136. await server.add_protobuf_handler(handle_name, error_handler, dht_pb2.PingRequest)
  137. assert is_process_running(server_pid)
  138. client = await P2P.create(initial_peers=await server.get_visible_maddrs())
  139. client_pid = client._child.pid
  140. assert is_process_running(client_pid)
  141. await client.wait_for_at_least_n_peers(1)
  142. ping_request = dht_pb2.PingRequest(peer=dht_pb2.NodeInfo(node_id=client.peer_id.to_bytes()), validate=True)
  143. with pytest.raises(P2PHandlerError) as excinfo:
  144. await client.call_protobuf_handler(server.peer_id, handle_name, ping_request, dht_pb2.PingResponse)
  145. assert "boom" in str(excinfo.value)
  146. await server.shutdown()
  147. await client.shutdown()
  148. async def handle_square_stream(_, reader: asyncio.StreamReader, writer: asyncio.StreamWriter) -> None:
  149. with closing(writer):
  150. while True:
  151. try:
  152. x = MSGPackSerializer.loads(await P2P.receive_raw_data(reader))
  153. except asyncio.IncompleteReadError:
  154. break
  155. result = x**2
  156. await P2P.send_raw_data(MSGPackSerializer.dumps(result), writer)
  157. async def validate_square_stream(reader: asyncio.StreamReader, writer: asyncio.StreamWriter) -> None:
  158. with closing(writer):
  159. for _ in range(10):
  160. x = np.random.randint(100)
  161. await P2P.send_raw_data(MSGPackSerializer.dumps(x), writer)
  162. result = MSGPackSerializer.loads(await P2P.receive_raw_data(reader))
  163. assert result == x**2
  164. @pytest.mark.asyncio
  165. async def test_call_peer_single_process():
  166. server = await P2P.create()
  167. server_pid = server._child.pid
  168. assert is_process_running(server_pid)
  169. handler_name = "square"
  170. await server.add_binary_stream_handler(handler_name, handle_square_stream)
  171. client = await P2P.create(initial_peers=await server.get_visible_maddrs())
  172. client_pid = client._child.pid
  173. assert is_process_running(client_pid)
  174. await client.wait_for_at_least_n_peers(1)
  175. _, reader, writer = await client.call_binary_stream_handler(server.peer_id, handler_name)
  176. await validate_square_stream(reader, writer)
  177. await server.shutdown()
  178. assert not is_process_running(server_pid)
  179. await client.shutdown()
  180. assert not is_process_running(client_pid)
  181. async def run_server(handler_name, server_side, response_received):
  182. server = await P2P.create()
  183. server_pid = server._child.pid
  184. assert is_process_running(server_pid)
  185. await server.add_binary_stream_handler(handler_name, handle_square_stream)
  186. server_side.send(server.peer_id)
  187. server_side.send(await server.get_visible_maddrs())
  188. while response_received.value == 0:
  189. await asyncio.sleep(0.5)
  190. await server.shutdown()
  191. assert not is_process_running(server_pid)
  192. def server_target(handler_name, server_side, response_received):
  193. asyncio.run(run_server(handler_name, server_side, response_received))
  194. @pytest.mark.asyncio
  195. async def test_call_peer_different_processes():
  196. handler_name = "square"
  197. server_side, client_side = mp.Pipe()
  198. response_received = mp.Value(np.ctypeslib.as_ctypes_type(np.int32))
  199. response_received.value = 0
  200. proc = mp.Process(target=server_target, args=(handler_name, server_side, response_received))
  201. proc.start()
  202. peer_id = client_side.recv()
  203. peer_maddrs = client_side.recv()
  204. client = await P2P.create(initial_peers=peer_maddrs)
  205. client_pid = client._child.pid
  206. assert is_process_running(client_pid)
  207. await client.wait_for_at_least_n_peers(1)
  208. _, reader, writer = await client.call_binary_stream_handler(peer_id, handler_name)
  209. await validate_square_stream(reader, writer)
  210. response_received.value = 1
  211. await client.shutdown()
  212. assert not is_process_running(client_pid)
  213. proc.join()
  214. assert proc.exitcode == 0
  215. @pytest.mark.asyncio
  216. async def test_error_closes_connection():
  217. async def handle_raising_error(_, reader: asyncio.StreamReader, writer: asyncio.StreamWriter) -> None:
  218. with closing(writer):
  219. command = await P2P.receive_raw_data(reader)
  220. if command == b"raise_error":
  221. raise Exception("The handler has failed")
  222. else:
  223. await P2P.send_raw_data(b"okay", writer)
  224. server = await P2P.create()
  225. server_pid = server._child.pid
  226. assert is_process_running(server_pid)
  227. handler_name = "handler"
  228. await server.add_binary_stream_handler(handler_name, handle_raising_error)
  229. client = await P2P.create(initial_peers=await server.get_visible_maddrs())
  230. client_pid = client._child.pid
  231. assert is_process_running(client_pid)
  232. await client.wait_for_at_least_n_peers(1)
  233. _, reader, writer = await client.call_binary_stream_handler(server.peer_id, handler_name)
  234. with closing(writer):
  235. await P2P.send_raw_data(b"raise_error", writer)
  236. with pytest.raises(asyncio.IncompleteReadError): # Means that the connection is closed
  237. await P2P.receive_raw_data(reader)
  238. # Despite the handler raised an exception, the server did not crash and ready for next requests
  239. assert is_process_running(server_pid)
  240. _, reader, writer = await client.call_binary_stream_handler(server.peer_id, handler_name)
  241. with closing(writer):
  242. await P2P.send_raw_data(b"behave_normally", writer)
  243. assert await P2P.receive_raw_data(reader) == b"okay"
  244. await server.shutdown()
  245. assert not is_process_running(server_pid)
  246. await client.shutdown()
  247. assert not is_process_running(client_pid)
  248. @pytest.mark.asyncio
  249. async def test_handlers_on_different_replicas():
  250. async def handler(_, reader: asyncio.StreamReader, writer: asyncio.StreamWriter, key: str) -> None:
  251. with closing(writer):
  252. await P2P.send_raw_data(key, writer)
  253. server_primary = await P2P.create()
  254. server_id = server_primary.peer_id
  255. await server_primary.add_binary_stream_handler("handle_primary", partial(handler, key=b"primary"))
  256. server_replica1 = await replicate_if_needed(server_primary, True)
  257. await server_replica1.add_binary_stream_handler("handle1", partial(handler, key=b"replica1"))
  258. server_replica2 = await replicate_if_needed(server_primary, True)
  259. await server_replica2.add_binary_stream_handler("handle2", partial(handler, key=b"replica2"))
  260. client = await P2P.create(initial_peers=await server_primary.get_visible_maddrs())
  261. await client.wait_for_at_least_n_peers(1)
  262. for name, expected_key in [("handle_primary", b"primary"), ("handle1", b"replica1"), ("handle2", b"replica2")]:
  263. _, reader, writer = await client.call_binary_stream_handler(server_id, name)
  264. with closing(writer):
  265. assert await P2P.receive_raw_data(reader) == expected_key
  266. await server_replica1.shutdown()
  267. await server_replica2.shutdown()
  268. # Primary does not handle replicas protocols after their shutdown
  269. for name in ["handle1", "handle2"]:
  270. _, reader, writer = await client.call_binary_stream_handler(server_id, name)
  271. with pytest.raises(asyncio.IncompleteReadError), closing(writer):
  272. await P2P.receive_raw_data(reader)
  273. await server_primary.shutdown()
  274. await client.shutdown()