Files
pyMC_Repeater/tests/test_handler_helpers_room_server.py
T
agessaman 377b054ab4 fix(room_server): push the stored post timestamp with a random attempt nonce
The pushed frame serialized the delivery wall-clock time instead of the
post's own stored timestamp, and left the flag byte's low 2 attempt bits
always zero. Firmware sends the stored post timestamp and ORs in a fresh
random attempt so a retried post produces a different packet hash and
ACK; with a fixed timestamp two retries within the same second would be
byte-identical and dropped as mesh duplicates. The serialized timestamp
now also equals the push_post_timestamp sync watermark, matching the
firmware invariant.
2026-07-16 20:37:30 -07:00

732 lines
24 KiB
Python

import asyncio
import time
from types import SimpleNamespace
from unittest.mock import AsyncMock, MagicMock, patch
import pytest
from repeater.handler_helpers.room_server import (
MAX_POST_TEXT_LEN,
MAX_UNSYNCED_POSTS,
TXT_TYPE_PLAIN,
TXT_TYPE_SIGNED_PLAIN,
GlobalRateLimiter,
RoomServer,
_truncate_utf8,
)
class _FakeIdentity:
def __init__(self, pubkey: bytes):
self._pubkey = pubkey
def get_public_key(self):
return self._pubkey
class _FakeClient:
def __init__(self, pubkey: bytes, shared_secret=b"s" * 32, out_path=b"", out_path_len=-1):
self.id = _FakeIdentity(pubkey)
self.shared_secret = shared_secret
self.out_path = bytearray(out_path)
self.out_path_len = out_path_len
self.sync_since = 0
class _FakeACL:
def __init__(self, clients=None):
self._clients = list(clients or [])
self.remove_client = MagicMock(return_value=True)
def get_all_clients(self):
return list(self._clients)
class _FakeDB:
def __init__(self):
self.insert_room_message = MagicMock(return_value=1)
self.upsert_client_sync = MagicMock()
self.get_client_sync = MagicMock(return_value=None)
self.get_unsynced_count = MagicMock(return_value=0)
self.get_all_room_clients = MagicMock(return_value=[])
self.get_unsynced_messages = MagicMock(return_value=[])
self.cleanup_old_messages = MagicMock(return_value=0)
def _make_room_server(db=None, acl=None, injector=None, max_posts=8):
return RoomServer(
room_hash=0x34,
room_name="room-alpha",
local_identity=_FakeIdentity(b"R" * 32),
sqlite_handler=db or _FakeDB(),
packet_injector=injector or AsyncMock(return_value=True),
acl=acl or _FakeACL(),
max_posts=max_posts,
)
@pytest.mark.asyncio
async def test_room_server_add_post_stores_message_and_updates_sync_state():
db = _FakeDB()
rs = _make_room_server(db=db, acl=_FakeACL([_FakeClient(b"C" * 32)]))
ok = await rs.add_post(
client_pubkey=b"A" * 32,
message_text="hello room",
sender_timestamp=111,
txt_type=TXT_TYPE_PLAIN,
)
assert ok is True
db.insert_room_message.assert_called_once()
db.upsert_client_sync.assert_called_once()
kwargs = db.upsert_client_sync.call_args.kwargs
assert kwargs["room_hash"] == "0x34"
assert kwargs["client_pubkey"] == (b"A" * 32).hex()
@pytest.mark.asyncio
async def test_room_server_add_post_truncates_and_rate_limits_client():
db = _FakeDB()
rs = _make_room_server(db=db)
client_key = b"B" * 32
long_msg = "x" * 500
first_ok = await rs.add_post(client_key, long_msg, sender_timestamp=5)
assert first_ok is True
args = db.insert_room_message.call_args.kwargs
assert len(args["message_text"].encode("utf-8")) == MAX_POST_TEXT_LEN
# Force client to appear at post-per-minute limit.
rs.client_post_times[client_key.hex()] = [time.time() - 1] * 10
second_ok = await rs.add_post(client_key, "blocked", sender_timestamp=6)
assert second_ok is False
@pytest.mark.asyncio
async def test_room_server_add_post_ascii_over_limit_stores_exactly_max_bytes():
db = _FakeDB()
rs = _make_room_server(db=db)
long_msg = "a" * 200 # ASCII: 1 byte per char, well over MAX_POST_TEXT_LEN
ok = await rs.add_post(b"G" * 32, long_msg, sender_timestamp=1)
assert ok is True
stored = db.insert_room_message.call_args.kwargs["message_text"]
assert len(stored.encode("utf-8")) == MAX_POST_TEXT_LEN
assert stored == "a" * MAX_POST_TEXT_LEN
@pytest.mark.asyncio
async def test_room_server_add_post_multibyte_utf8_truncates_on_codepoint_boundary():
db = _FakeDB()
rs = _make_room_server(db=db)
# Each emoji is 4 bytes in UTF-8; padding forces the cut to land mid-emoji
# if truncation were byte-naive instead of codepoint-aware.
padding = "a" * (MAX_POST_TEXT_LEN - 2)
msg = padding + "\U0001f600\U0001f600\U0001f600" # grinning face emoji x3
assert len(msg.encode("utf-8")) > MAX_POST_TEXT_LEN
ok = await rs.add_post(b"H" * 32, msg, sender_timestamp=2)
assert ok is True
stored = db.insert_room_message.call_args.kwargs["message_text"]
encoded = stored.encode("utf-8")
assert len(encoded) <= MAX_POST_TEXT_LEN
# Must decode cleanly (no partial multi-byte sequence) and round-trip.
assert encoded.decode("utf-8") == stored
@pytest.mark.asyncio
async def test_room_server_add_post_exact_limit_text_untouched():
db = _FakeDB()
rs = _make_room_server(db=db)
msg = "y" * MAX_POST_TEXT_LEN
ok = await rs.add_post(b"I" * 32, msg, sender_timestamp=3)
assert ok is True
stored = db.insert_room_message.call_args.kwargs["message_text"]
assert stored == msg
assert len(stored.encode("utf-8")) == MAX_POST_TEXT_LEN
def test_truncate_utf8_helper_boundary_cases():
# Under the limit: untouched.
assert _truncate_utf8("short", 151) == "short"
# Exactly at the limit: untouched.
exact = "z" * 151
assert _truncate_utf8(exact, 151) == exact
# Multi-byte straddling the boundary: cuts cleanly, decodes, stays <= limit.
text = ("b" * 149) + "\U0001f600\U0001f600" # 149 + 4 + 4 = 157 bytes
result = _truncate_utf8(text, 151)
encoded = result.encode("utf-8")
assert len(encoded) <= 151
assert encoded.decode("utf-8") == result
@pytest.mark.asyncio
async def test_room_server_add_post_returns_false_on_db_insert_failure():
db = _FakeDB()
db.insert_room_message.return_value = 0
rs = _make_room_server(db=db)
ok = await rs.add_post(b"D" * 32, "msg", sender_timestamp=9)
assert ok is False
@pytest.mark.asyncio
async def test_room_server_send_advert_callback_returns_false_on_inject_failure():
config = {
"identities": {
"room_servers": [
{
"name": "room-alpha",
"settings": {"node_name": "Room Alpha", "latitude": 1.0, "longitude": 2.0},
}
]
}
}
injector = AsyncMock(return_value=False)
rs = RoomServer(
room_hash=0x34,
room_name="room-alpha",
local_identity=_FakeIdentity(b"R" * 32),
sqlite_handler=_FakeDB(),
packet_injector=injector,
acl=_FakeACL(),
config_path="/tmp/room.yaml",
config=config,
config_manager=SimpleNamespace(),
)
packet = SimpleNamespace()
with patch("openhop_core.protocol.PacketBuilder.create_advert", return_value=packet):
ok = await rs.cli.send_advert_callback()
assert ok is False
injector.assert_awaited_once()
def test_room_server_init_caps_max_posts_to_hard_limit():
rs = _make_room_server(max_posts=MAX_UNSYNCED_POSTS + 50)
assert rs.max_posts == MAX_UNSYNCED_POSTS
@pytest.mark.asyncio
async def test_room_server_push_post_to_client_success_direct_route_sets_path_and_ack():
db = _FakeDB()
db.get_client_sync.return_value = {"push_failures": 0}
injector = AsyncMock(return_value=True)
rs = _make_room_server(db=db, injector=injector)
rs.global_limiter = SimpleNamespace(acquire=AsyncMock(), release=MagicMock())
rs._handle_ack_received = AsyncMock()
client = _FakeClient(pubkey=b"E" * 32, out_path=b"\xaa\xbb", out_path_len=2)
post = {
"author_pubkey": (b"F" * 32).hex(),
"message_text": "payload",
"post_timestamp": 1234.5,
}
packet = SimpleNamespace(path=bytearray(), path_len=0)
with (
patch(
"repeater.handler_helpers.room_server.CryptoUtils.sha256",
return_value=b"\x01\x02\x03\x04abcd",
),
patch(
"repeater.handler_helpers.room_server.PacketBuilder.create_datagram",
return_value=packet,
),
):
ok = await rs.push_post_to_client(client, post)
assert ok is True
assert bytes(packet.path) == b"\xaa\xbb"
assert packet.path_len == 2
injector.assert_awaited_once_with(
packet,
wait_for_ack=True,
expected_crc=67305985,
ack_timeout_s=10.0,
)
rs._handle_ack_received.assert_awaited_once_with(
client.id.get_public_key(), post["post_timestamp"]
)
rs.global_limiter.release.assert_called_once()
@pytest.mark.asyncio
async def test_room_server_push_post_to_client_clamps_oversized_legacy_stored_text():
"""A post stored before the write-time limit was enforced (or otherwise
over MAX_POST_TEXT_LEN bytes) must still be clamped at push time so the
outgoing frame's text portion never exceeds the firmware's budget."""
db = _FakeDB()
db.get_client_sync.return_value = {"push_failures": 0}
injector = AsyncMock(return_value=True)
rs = _make_room_server(db=db, injector=injector)
rs.global_limiter = SimpleNamespace(acquire=AsyncMock(), release=MagicMock())
rs._handle_ack_received = AsyncMock()
client = _FakeClient(pubkey=b"E" * 32, out_path=b"\xaa\xbb", out_path_len=2)
oversized_text = "q" * (MAX_POST_TEXT_LEN + 50)
post = {
"author_pubkey": (b"F" * 32).hex(),
"message_text": oversized_text,
"post_timestamp": 1234.5,
}
packet = SimpleNamespace(path=bytearray(), path_len=0)
with (
patch(
"repeater.handler_helpers.room_server.CryptoUtils.sha256",
return_value=b"\x01\x02\x03\x04abcd",
),
patch(
"repeater.handler_helpers.room_server.PacketBuilder.create_datagram",
return_value=packet,
) as create_datagram,
):
ok = await rs.push_post_to_client(client, post)
assert ok is True
plaintext = create_datagram.call_args.kwargs["plaintext"]
# Prefix is timestamp(4) + flags(1) + author_prefix(4) = 9 bytes.
text_portion = plaintext[9:]
assert len(text_portion) == MAX_POST_TEXT_LEN
assert text_portion.decode("utf-8") == "q" * MAX_POST_TEXT_LEN
@pytest.mark.asyncio
async def test_room_server_push_expected_ack_matches_firmware_signed_ack():
"""The pending ACK CRC must match what a signed-plain receiver sends back.
Firmware clients (BaseChatMesh::onPeerDataRecv) and openhop_core's text
handler ack TXT_TYPE_SIGNED_PLAIN with
``sha256(decrypted[0 : 9 + strlen(text)] || client_pubkey)[:4]``.
Regression test for the room server expecting a plain-DM style hash
(timestamp + attempt + text) instead: every push timed out and posts were
re-pushed forever (issue #286).
"""
from openhop_core import LocalIdentity
from openhop_core.protocol import CryptoUtils, Identity
room_id = LocalIdentity()
client_id = LocalIdentity()
client_pk = client_id.get_public_key()
shared = Identity(client_pk).calc_shared_secret(room_id.get_private_key())
db = _FakeDB()
sent = []
injector_kwargs = []
async def injector(packet, wait_for_ack=False, **kwargs):
sent.append(packet)
injector_kwargs.append(kwargs)
return False # no ACK: leaves the pending upsert as the only db write
rs = RoomServer(
room_hash=room_id.get_public_key()[0],
room_name="parity",
local_identity=room_id,
sqlite_handler=db,
packet_injector=injector,
acl=_FakeACL(),
)
rs.global_limiter = SimpleNamespace(acquire=AsyncMock(), release=MagicMock())
author = LocalIdentity().get_public_key()
client = _FakeClient(pubkey=client_pk, shared_secret=shared, out_path=b"\x01", out_path_len=1)
post = {
"author_pubkey": author.hex(),
"message_text": "parity check",
"post_timestamp": 1234.5,
}
ok = await rs.push_post_to_client(client, post)
assert ok is False
assert len(sent) == 1
upserts = [
c.kwargs for c in db.upsert_client_sync.call_args_list if "pending_ack_crc" in c.kwargs
]
assert len(upserts) == 1
expected_ack_crc = upserts[0]["pending_ack_crc"]
# The injector must be told the crypto CRC (and the computed timeout) so
# dispatcher.wait_for_ack matches the client's actual ACK.
assert injector_kwargs[0]["expected_crc"] == expected_ack_crc
assert injector_kwargs[0]["ack_timeout_s"] > 0
# Decrypt the pushed datagram and verify the signed-plain layout.
pkt = sent[0]
encrypted = bytes(pkt.payload[2 : pkt.payload_len])
decrypted = CryptoUtils.mac_then_decrypt(shared[:16], shared, encrypted)
assert decrypted is not None
flags = decrypted[4]
assert (flags >> 2) & 0x3F == TXT_TYPE_SIGNED_PLAIN
assert bytes(decrypted[5:9]) == author[:4]
body = bytes(decrypted[9:])
nul = body.find(b"\x00")
text_len = nul if nul >= 0 else len(body)
assert body[:text_len] == b"parity check"
# Recompute the ACK exactly as the receiving client does.
client_ack_crc = int.from_bytes(
CryptoUtils.sha256(bytes(decrypted[: 9 + text_len]) + client_pk)[:4], "little"
)
assert client_ack_crc == expected_ack_crc
@pytest.mark.asyncio
async def test_push_serializes_stored_post_timestamp_not_walltime():
"""The pushed frame's timestamp must be the post's own stored timestamp,
not the delivery wall-clock time (MyMesh.cpp:56 serializes the stored
post's timestamp, not `now`)."""
db = _FakeDB()
db.get_client_sync.return_value = {"push_failures": 0}
injector = AsyncMock(return_value=True)
rs = _make_room_server(db=db, injector=injector)
rs.global_limiter = SimpleNamespace(acquire=AsyncMock(), release=MagicMock())
rs._handle_ack_received = AsyncMock()
client = _FakeClient(pubkey=b"E" * 32)
post = {
"author_pubkey": (b"F" * 32).hex(),
"message_text": "payload",
"post_timestamp": 1000.0,
}
packet = SimpleNamespace(path=bytearray(), path_len=0)
with (
patch(
"repeater.handler_helpers.room_server.CryptoUtils.sha256",
return_value=b"\x01\x02\x03\x04abcd",
),
patch(
"repeater.handler_helpers.room_server.PacketBuilder.create_datagram",
return_value=packet,
) as create_datagram,
):
ok = await rs.push_post_to_client(client, post)
assert ok is True
plaintext = create_datagram.call_args.kwargs["plaintext"]
assert int.from_bytes(plaintext[0:4], "little") == 1000
@pytest.mark.asyncio
async def test_push_attempt_bits_randomized_across_retries():
"""Each push must OR a fresh random byte's low 2 bits into flags so a
retried post gets a different packet hash (and ACK), per MyMesh.cpp:59-60
("so packet hash (and ACK) will be different")."""
db = _FakeDB()
db.get_client_sync.return_value = {"push_failures": 0}
injector = AsyncMock(return_value=True)
rs = _make_room_server(db=db, injector=injector)
rs.global_limiter = SimpleNamespace(acquire=AsyncMock(), release=MagicMock())
rs._handle_ack_received = AsyncMock()
client = _FakeClient(pubkey=b"E" * 32)
post = {
"author_pubkey": (b"F" * 32).hex(),
"message_text": "payload",
"post_timestamp": 1234.5,
}
plaintexts = []
acks = []
with patch("repeater.handler_helpers.room_server.secrets.randbits", side_effect=[1, 2]):
for _ in range(2):
packet = SimpleNamespace(path=bytearray(), path_len=0)
with patch(
"repeater.handler_helpers.room_server.PacketBuilder.create_datagram",
return_value=packet,
) as create_datagram:
ok = await rs.push_post_to_client(client, post)
assert ok is True
plaintexts.append(create_datagram.call_args.kwargs["plaintext"])
acks.append(db.upsert_client_sync.call_args.kwargs["pending_ack_crc"])
flags = [pt[4] for pt in plaintexts]
assert (flags[0] >> 2) & 0x3F == TXT_TYPE_SIGNED_PLAIN
assert (flags[1] >> 2) & 0x3F == TXT_TYPE_SIGNED_PLAIN
assert flags[0] & 0x03 != flags[1] & 0x03
assert plaintexts[0][0:4] == plaintexts[1][0:4] # timestamp unchanged
assert plaintexts[0][5:] == plaintexts[1][5:] # author prefix + text unchanged
assert acks[0] != acks[1]
@pytest.mark.asyncio
async def test_push_watermark_equals_serialized_timestamp():
"""The db sync watermark update must use the same timestamp value that
was serialized into the pushed plaintext."""
db = _FakeDB()
db.get_client_sync.return_value = {"push_failures": 0}
injector = AsyncMock(return_value=True)
rs = _make_room_server(db=db, injector=injector)
rs.global_limiter = SimpleNamespace(acquire=AsyncMock(), release=MagicMock())
rs._handle_ack_received = AsyncMock()
client = _FakeClient(pubkey=b"E" * 32)
post = {
"author_pubkey": (b"F" * 32).hex(),
"message_text": "payload",
"post_timestamp": 555.0,
}
packet = SimpleNamespace(path=bytearray(), path_len=0)
with (
patch(
"repeater.handler_helpers.room_server.CryptoUtils.sha256",
return_value=b"\x01\x02\x03\x04abcd",
),
patch(
"repeater.handler_helpers.room_server.PacketBuilder.create_datagram",
return_value=packet,
) as create_datagram,
):
ok = await rs.push_post_to_client(client, post)
assert ok is True
plaintext = create_datagram.call_args.kwargs["plaintext"]
serialized_ts = int.from_bytes(plaintext[0:4], "little")
watermark = db.upsert_client_sync.call_args.kwargs["push_post_timestamp"]
assert int(watermark) == serialized_ts
@pytest.mark.asyncio
async def test_room_server_push_post_to_client_backoff_skip_and_timeout_path():
db = _FakeDB()
injector = AsyncMock(return_value=False)
rs = _make_room_server(db=db, injector=injector)
rs.global_limiter = SimpleNamespace(acquire=AsyncMock(), release=MagicMock())
rs._handle_ack_timeout = AsyncMock()
client = _FakeClient(pubkey=b"G" * 32)
post = {
"author_pubkey": (b"H" * 32).hex(),
"message_text": "payload",
"post_timestamp": 88.0,
}
# In backoff window: skip send.
db.get_client_sync.return_value = {"push_failures": 2, "updated_at": time.time()}
skip_ok = await rs.push_post_to_client(client, post)
assert skip_ok is False
injector.assert_not_awaited()
# Out of backoff and send fails -> timeout handler called.
db.get_client_sync.return_value = {"push_failures": 1, "updated_at": time.time() - 9999}
with (
patch(
"repeater.handler_helpers.room_server.PacketBuilder._pack_timestamp_data",
return_value=b"pk",
),
patch(
"repeater.handler_helpers.room_server.CryptoUtils.sha256",
return_value=b"\x01\x02\x03\x04abcd",
),
patch(
"repeater.handler_helpers.room_server.PacketBuilder.create_datagram",
return_value=SimpleNamespace(path=bytearray(), path_len=0),
),
):
fail_ok = await rs.push_post_to_client(client, post)
assert fail_ok is False
rs._handle_ack_timeout.assert_awaited_once_with(client.id.get_public_key())
@pytest.mark.asyncio
async def test_room_server_ack_helpers_and_unsynced_count_fallbacks():
db = _FakeDB()
rs = _make_room_server(db=db)
await rs._handle_ack_received(b"I" * 32, post_timestamp=123.0)
db.upsert_client_sync.assert_called()
db.get_client_sync.return_value = {"push_failures": 2}
await rs._handle_ack_timeout(b"I" * 32)
# last call should have incremented failures and cleared pending ack
timeout_kwargs = db.upsert_client_sync.call_args.kwargs
assert timeout_kwargs["push_failures"] == 3
assert timeout_kwargs["pending_ack_crc"] == 0
db.get_client_sync.side_effect = RuntimeError("db down")
assert rs.get_unsynced_count(b"I" * 32) == 0
@pytest.mark.asyncio
async def test_room_server_evict_failed_clients_and_check_ack_timeouts():
db = _FakeDB()
acl = _FakeACL([_FakeClient(b"J" * 32)])
rs = _make_room_server(db=db, acl=acl)
now = time.time()
db.get_all_room_clients.return_value = [
{
"client_pubkey": (b"J" * 32).hex(),
"push_failures": 3,
"last_activity": now,
"pending_ack_crc": 0,
"ack_timeout_time": 0,
},
{
"client_pubkey": (b"K" * 32).hex(),
"push_failures": 0,
"last_activity": now - 5000,
"pending_ack_crc": 0,
"ack_timeout_time": 0,
},
]
await rs._evict_failed_clients()
assert db.upsert_client_sync.call_count >= 2
assert acl.remove_client.call_count == 2
rs._handle_ack_timeout = AsyncMock()
db.get_all_room_clients.return_value = [
{
"client_pubkey": (b"L" * 32).hex(),
"pending_ack_crc": 123,
"ack_timeout_time": now - 1,
},
{
"client_pubkey": (b"M" * 32).hex(),
"pending_ack_crc": 0,
"ack_timeout_time": now - 1,
},
]
await rs._check_ack_timeouts()
rs._handle_ack_timeout.assert_awaited_once_with(b"L" * 32)
@pytest.mark.asyncio
async def test_room_server_start_and_stop_are_idempotent():
rs = _make_room_server()
await rs.start()
assert rs._running is True
first_task = rs._sync_task
# Second start should not replace task.
await rs.start()
assert rs._sync_task is first_task
await rs.stop()
assert rs._running is False
# Stop again should be safe.
await rs.stop()
# Ensure task is cleaned up.
if first_task:
assert first_task.cancelled() or first_task.done()
def _push_post(author=b"F" * 32):
return {
"author_pubkey": author.hex(),
"message_text": "payload",
"post_timestamp": 1234.5,
}
@pytest.mark.asyncio
async def test_global_rate_limiter_serializes_concurrent_room_pushes():
"""Two room loops sharing the limiter must not transmit concurrently, and
the inter-message gap must be enforced between their sends.
Regression: acquire() used to release the lock before returning, so
both pushes ran their radio send with no lock held.
"""
limiter = GlobalRateLimiter(min_gap_seconds=0.05)
active = 0
max_active = 0
starts = []
async def injector(packet, wait_for_ack=True, expected_crc=0, ack_timeout_s=0.0):
nonlocal active, max_active
starts.append(time.monotonic())
active += 1
max_active = max(max_active, active)
try:
await asyncio.sleep(0.02) # simulate airtime
finally:
active -= 1
return True
rooms = []
for i in range(2):
db = _FakeDB()
db.get_client_sync.return_value = {"push_failures": 0}
rs = _make_room_server(db=db, injector=injector)
rs.global_limiter = limiter # share one real limiter across both rooms
rs._handle_ack_received = AsyncMock()
rooms.append(rs)
client = _FakeClient(pubkey=b"E" * 32)
packet = SimpleNamespace(path=bytearray(), path_len=0)
with (
patch(
"repeater.handler_helpers.room_server.CryptoUtils.sha256",
return_value=b"\x01\x02\x03\x04abcd",
),
patch(
"repeater.handler_helpers.room_server.PacketBuilder.create_datagram",
return_value=packet,
),
):
results = await asyncio.gather(
*(rs.push_post_to_client(client, _push_post()) for rs in rooms)
)
assert results == [True, True]
assert max_active == 1 # never two transmissions in flight at once
assert len(starts) == 2
# The second send started at least min_gap after the first began.
assert starts[1] - starts[0] >= 0.05
assert not limiter.lock.locked() # fully released at the end
@pytest.mark.asyncio
async def test_global_rate_limiter_releases_lock_on_send_exception():
"""If the radio send raises, the limiter lock must still be released so the
next push is not deadlocked."""
limiter = GlobalRateLimiter(min_gap_seconds=0.0)
async def failing_injector(packet, **kwargs):
raise RuntimeError("radio boom")
db = _FakeDB()
db.get_client_sync.return_value = {"push_failures": 0}
rs = _make_room_server(db=db, injector=failing_injector)
rs.global_limiter = limiter
client = _FakeClient(pubkey=b"E" * 32)
packet = SimpleNamespace(path=bytearray(), path_len=0)
with (
patch(
"repeater.handler_helpers.room_server.CryptoUtils.sha256",
return_value=b"\x01\x02\x03\x04abcd",
),
patch(
"repeater.handler_helpers.room_server.PacketBuilder.create_datagram",
return_value=packet,
),
):
ok = await rs.push_post_to_client(client, _push_post())
assert ok is False
assert not limiter.lock.locked()
# The lock is reusable immediately afterwards.
await limiter.acquire()
limiter.release()