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The #620 patch fixed the OpenSSL-3.x-strips-plain-RSA-AES-GCM cipher mismatch on the printer-facing TLSProxy client context. The same fix was never applied to the four other slicer-facing TLS contexts. On hardened distros (Fedora / RHEL with update-crypto-policies, hardened Alpine builds) where the system narrows DEFAULT to forward-secrecy only, the slicer's ClientHello finds no overlap with what Bambuddy offers and the handshake aborts with the slicer reporting code=-1 before any application data flows. The reporter pinpointed the missing set_ciphers call in bind_server.py against the #620 lineage; the audit-wide sweep here extends the same fix to mqtt_server.py, tcp_proxy._create_server_ssl_context (the missing other half of #620), and ftp_server.py. For the three new contexts (bind / mqtt / proxy-server) the cipher string is DEFAULT:AES256-GCM-SHA384:AES128-GCM-SHA256 — verbatim match with the #620 client-side fix. For FTPS the original HIGH baseline is kept (HIGH:AES256-GCM-SHA384:AES128-GCM-SHA256:!aNULL:!MD5:!RC4) so the cipher set stays a strict superset of what shipped before — HIGH offers ~58 suites DEFAULT doesn't (CCM / ARIA / CAMELLIA / DSS) that no Bambu slicer is known to pick, but narrowing a compat surface without proof would violate the existing don't-remove-compat-pinning rule. TLS version pins (TLSv1_2 minimum across all four, TLSv1_2 max on FTPS for the BambuStudio PSK-reuse compat) and verify-mode settings are unchanged — only the cipher list is widened.
206 lines
7.5 KiB
Python
206 lines
7.5 KiB
Python
"""Regression tests for #1610: every slicer-facing VP TLS context must
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explicitly include the plain-RSA AES-GCM cipher suites that real Bambu
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printers (and therefore the BambuStudio / OrcaSlicer client paths) expect.
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Real Bambu printers offer only ``AES256-GCM-SHA384`` / ``AES128-GCM-SHA256``
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(plain RSA key exchange) on their TLS endpoints. Slicers built against
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that surface assume the server side will accept those suites. On
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distributions whose OpenSSL ``DEFAULT`` cipher list has been narrowed by a
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system crypto policy (Fedora / RHEL ``update-crypto-policies``, hardened
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Alpine builds), Python's stock ``SSLContext`` ends up offering only
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ECDHE/DHE — no overlap with the slicer's ClientHello, the handshake
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aborts, and the slicer reports a generic ``code=-1`` connect error.
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The #620 patch fixed this for the printer-facing CLIENT context in
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``tcp_proxy.py::_create_client_ssl_context``. #1610 audited the remaining
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slicer-facing surface and applied the same explicit cipher pin to every
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context that accepts a slicer connection:
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* ``bind_server.py::_create_tls_context`` — port 3002 (bind/detect)
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* ``mqtt_server.py`` (inline in ``start``) — port 8883 (MQTT-over-TLS)
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* ``tcp_proxy.py::_create_server_ssl_context`` — proxy-mode 3002
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* ``ftp_server.py`` (inline in ``start``) — port 990 (FTPS)
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If any of these regress to a context that no longer offers
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``AES256-GCM-SHA384`` / ``AES128-GCM-SHA256``, users on hardened distros
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will hit the #1610 / #620 cipher-mismatch failure mode.
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"""
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import ssl
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from pathlib import Path
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from unittest.mock import patch
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import pytest
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from backend.app.services.virtual_printer.bind_server import BindServer
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from backend.app.services.virtual_printer.certificate import CertificateService
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from backend.app.services.virtual_printer.ftp_server import VirtualPrinterFTPServer
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from backend.app.services.virtual_printer.mqtt_server import SimpleMQTTServer
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from backend.app.services.virtual_printer.tcp_proxy import TLSProxy
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REQUIRED_CIPHERS = ("AES256-GCM-SHA384", "AES128-GCM-SHA256")
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def _cert_pair(tmp_path: Path) -> tuple[Path, Path]:
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"""Generate a real self-signed CA + per-VP cert pair via the production
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CertificateService. Returns ``(cert_path, key_path)`` suitable for
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``load_cert_chain`` calls inside the VP services under test."""
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svc = CertificateService(cert_dir=tmp_path, serial="01P00A391800001")
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return svc.ensure_certificates()
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def _assert_required_ciphers(ctx: ssl.SSLContext, where: str) -> None:
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"""Fail with a useful diagnostic if either required cipher is missing."""
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offered = {c["name"] for c in ctx.get_ciphers()}
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missing = [c for c in REQUIRED_CIPHERS if c not in offered]
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assert not missing, (
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f"{where}: missing plain-RSA AES-GCM cipher(s) {missing}. "
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f"Real Bambu printers / slicers require these on the slicer-facing "
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f"TLS surface — see #1610. Offered ciphers: {sorted(offered)}"
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)
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class TestBindServerTlsCiphers:
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def test_create_tls_context_offers_plain_rsa_aes_gcm(self, tmp_path):
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cert_path, key_path = _cert_pair(tmp_path)
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server = BindServer(
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serial="01P00A391800001",
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model="C12",
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name="vp",
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version="01.07.00.00",
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bind_address="127.0.0.1",
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cert_path=cert_path,
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key_path=key_path,
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)
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ctx = server._create_tls_context()
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assert ctx is not None
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_assert_required_ciphers(ctx, "bind_server._create_tls_context")
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class TestTlsProxyServerCiphers:
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"""Slicer-facing side of proxy mode — was not patched by the #620 fix."""
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def test_create_server_ssl_context_offers_plain_rsa_aes_gcm(self, tmp_path):
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cert_path, key_path = _cert_pair(tmp_path)
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proxy = TLSProxy(
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name="Bind-TLS",
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listen_port=3002,
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target_host="127.0.0.1",
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target_port=3002,
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server_cert_path=str(cert_path),
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server_key_path=str(key_path),
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on_connect=lambda cid: None,
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on_disconnect=lambda cid: None,
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bind_address="127.0.0.1",
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)
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ctx = proxy._create_server_ssl_context()
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_assert_required_ciphers(ctx, "tcp_proxy._create_server_ssl_context")
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def test_create_client_ssl_context_still_offers_plain_rsa_aes_gcm(self, tmp_path):
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"""The original #620 fix must remain in place."""
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cert_path, key_path = _cert_pair(tmp_path)
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proxy = TLSProxy(
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name="Bind-TLS",
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listen_port=3002,
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target_host="127.0.0.1",
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target_port=3002,
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server_cert_path=str(cert_path),
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server_key_path=str(key_path),
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on_connect=lambda cid: None,
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on_disconnect=lambda cid: None,
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bind_address="127.0.0.1",
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)
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ctx = proxy._create_client_ssl_context()
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_assert_required_ciphers(ctx, "tcp_proxy._create_client_ssl_context")
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class TestMqttServerTlsCiphers:
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"""MQTT server builds its SSLContext inline in start(); intercept the
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``asyncio.start_server`` call so the test doesn't actually bind a port."""
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@pytest.mark.asyncio
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async def test_start_configures_plain_rsa_aes_gcm(self, tmp_path):
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cert_path, key_path = _cert_pair(tmp_path)
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server = SimpleMQTTServer(
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serial="01P00A391800001",
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access_code="deadbeef",
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cert_path=cert_path,
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key_path=key_path,
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model="C12",
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bind_address="127.0.0.1",
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)
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captured: dict[str, ssl.SSLContext] = {}
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async def _capture(*_args, ssl=None, **_kwargs):
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captured["ctx"] = ssl
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class _FakeServer:
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sockets = []
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def close(self):
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pass
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async def wait_closed(self):
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pass
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def is_serving(self):
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return False
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return _FakeServer()
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with patch("asyncio.start_server", _capture):
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await server.start()
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try:
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assert "ctx" in captured, "asyncio.start_server was not invoked"
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_assert_required_ciphers(captured["ctx"], "mqtt_server.start")
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finally:
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await server.stop()
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class TestFtpServerTlsCiphers:
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"""FTP server builds its SSLContext inline in start()."""
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@pytest.mark.asyncio
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async def test_start_configures_plain_rsa_aes_gcm(self, tmp_path):
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cert_path, key_path = _cert_pair(tmp_path)
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upload_dir = tmp_path / "uploads"
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upload_dir.mkdir()
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server = VirtualPrinterFTPServer(
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upload_dir=upload_dir,
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access_code="deadbeef",
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cert_path=cert_path,
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key_path=key_path,
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bind_address="127.0.0.1",
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)
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captured: dict[str, ssl.SSLContext] = {}
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async def _capture(*_args, ssl=None, **_kwargs):
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captured["ctx"] = ssl
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class _FakeServer:
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sockets = []
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def close(self):
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pass
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async def wait_closed(self):
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pass
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def is_serving(self):
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return False
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async def serve_forever(self):
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pass
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return _FakeServer()
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with patch("asyncio.start_server", _capture):
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await server.start()
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try:
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assert "ctx" in captured, "asyncio.start_server was not invoked"
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_assert_required_ciphers(captured["ctx"], "ftp_server.start")
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finally:
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await server.stop()
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