homelab-codex-ws/services/kb-query/tests/test_embed_router.py
oskar cb8a19de83 test(kb-query): luki T1–T3 z test_fallback.py + status kalibracji ollama-piha (salvage S3+S4)
T1: one-shot switch przy timeoutcie mid-embed (ścieżka asyncio.wait_for,
dotąd nieprzetestowana — scenariusz 'SOLARIA wisi'). T2: breaker zostaje
'down' po mid-embed failure — kolejne requesty w oknie TTL idą prosto na
fallback bez probe'a. T3: noga fallbacku nie dziedziczy twardego timeoutu
primary. T4 pominięty (semantyka granicy TTL identyczna, wg raportu).
Pytest kb-query: 42/42 PASS.

S4: pomiar kalibracji 2026-07-27 (peak ~983 MiB, GO) dopisany do override'u
i sekcji Calibration w README — master mówił dotąd 'Confirm/trim after live
calibration'; konfiguracja kontenera identyczna z mierzoną, pomiar się
przenosi. Raport dedup: status zaktualizowany na 'salvage wykonany'.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
2026-07-30 16:40:24 +02:00

274 lines
11 KiB
Python

"""Unit tests for the SOLARIA->PIHA embed fallback state machine (app.embed_router) -- no
real Ollama on either side. Fake backends are keyed by URL so one fake session can serve
both legs; the clock is injected so the 30 s TTL is tested without sleeping."""
from __future__ import annotations
import asyncio
import pathlib
import sys
import aiohttp
import pytest
sys.path.insert(0, str(pathlib.Path(__file__).resolve().parents[1]))
from app.embed_router import EmbedBackendError, EmbedRouter, ModelMismatchError # noqa: E402
PRIMARY = "http://solaria:11434"
FALLBACK = "http://192.168.31.5:11434"
class _FakeResponse:
def __init__(self, payload=None, exc=None, status=200, delay=0.0):
self._payload = payload
self._exc = exc
self.status = status # check_ollama_health reads resp.status directly
self._delay = delay
async def __aenter__(self):
if self._delay:
await asyncio.sleep(self._delay)
if self._exc is not None:
raise self._exc
return self
async def __aexit__(self, *exc):
return False
def raise_for_status(self):
pass
async def json(self):
return self._payload
class _FakeBackend:
"""One fake Ollama: `models` drives /api/tags, `down=True` refuses every connection,
`embed_exc` makes /api/embeddings fail while /api/tags still answers (the plan's step-3b
scenario: probe says up, the real embed then dies mid-query)."""
def __init__(self, models=("bge-m3:latest",), down=False, embed_exc=None, vector_value=0.01,
embed_delay=0.0):
self.models = list(models)
self.down = down
self.embed_exc = embed_exc
self.vector_value = vector_value
self.embed_delay = embed_delay # seconds the /api/embeddings answer hangs before serving
self.tags_calls = 0
self.embed_calls = 0
class _FakeSession:
def __init__(self, backends: dict):
self._backends = backends
def _backend(self, url):
for base, backend in self._backends.items():
if url.startswith(base):
return backend
raise AssertionError(f"unexpected url: {url}")
def get(self, url, timeout=None):
backend = self._backend(url)
backend.tags_calls += 1
if backend.down:
return _FakeResponse(exc=aiohttp.ClientConnectionError("connection refused"))
return _FakeResponse({"models": [{"name": n} for n in backend.models]})
def post(self, url, json):
backend = self._backend(url)
backend.embed_calls += 1
if backend.down:
return _FakeResponse(exc=aiohttp.ClientConnectionError("connection refused"))
if backend.embed_exc is not None:
return _FakeResponse(exc=backend.embed_exc)
return _FakeResponse({"embedding": [backend.vector_value] * 1024},
delay=backend.embed_delay)
class _FakeClock:
def __init__(self):
self.now = 1000.0
def __call__(self):
return self.now
def _router(fallback_url=FALLBACK, clock=None, **kwargs):
return EmbedRouter(
PRIMARY,
fallback_url,
embed_model="bge-m3",
clock=clock or _FakeClock(),
**kwargs,
)
class TestPrimaryHealthy:
async def test_embeds_on_primary_and_reports_its_name(self):
solaria = _FakeBackend()
piha = _FakeBackend()
session = _FakeSession({PRIMARY: solaria, FALLBACK: piha})
embedding, backend = await _router().embed(session, "q")
assert backend == "solaria"
assert len(embedding) == 1024
assert solaria.embed_calls == 1
assert piha.embed_calls == 0
async def test_health_verdict_is_cached_within_ttl(self):
solaria = _FakeBackend()
clock = _FakeClock()
router = _router(clock=clock)
session = _FakeSession({PRIMARY: solaria, FALLBACK: _FakeBackend()})
await router.embed(session, "q1")
probes_after_first = solaria.tags_calls # probe + first-use model verification
clock.now += 10 # inside the 30 s TTL
await router.embed(session, "q2")
assert solaria.tags_calls == probes_after_first # no new probe, model check done once
async def test_model_tag_with_latest_suffix_satisfies_bare_model_name(self):
solaria = _FakeBackend(models=["bge-m3:latest"])
session = _FakeSession({PRIMARY: solaria, FALLBACK: _FakeBackend()})
_, backend = await _router().embed(session, "q")
assert backend == "solaria"
class TestFailover:
async def test_primary_down_at_probe_falls_back_to_piha(self):
solaria = _FakeBackend(down=True)
piha = _FakeBackend(vector_value=0.02)
session = _FakeSession({PRIMARY: solaria, FALLBACK: piha})
embedding, backend = await _router().embed(session, "q")
assert backend == "piha"
assert embedding[0] == 0.02
assert solaria.embed_calls == 0
async def test_mid_embed_failure_serves_same_query_from_fallback(self):
# Plan §2 D2 step 3b: probe said up, the real embed then dies -- the SAME request
# must come back from the fallback, never as an error to the user.
solaria = _FakeBackend(embed_exc=aiohttp.ClientConnectionError("died mid-embed"))
piha = _FakeBackend(vector_value=0.02)
session = _FakeSession({PRIMARY: solaria, FALLBACK: piha})
router = _router()
embedding, backend = await router.embed(session, "q")
assert backend == "piha"
assert embedding[0] == 0.02
assert solaria.embed_calls == 1
async def test_mid_embed_timeout_serves_same_query_from_fallback(self):
# The step-3b guarantee for the OTHER failure shape: SOLARIA hangs instead of
# refusing. This exercises the asyncio.wait_for path (a hang raises TimeoutError,
# not aiohttp.ClientError) -- the hard primary timeout must cut the hang off and
# the SAME request must still come back from the fallback.
solaria = _FakeBackend(embed_delay=0.2)
piha = _FakeBackend(vector_value=0.02)
session = _FakeSession({PRIMARY: solaria, FALLBACK: piha})
router = _router(primary_embed_timeout_s=0.05)
embedding, backend = await router.embed(session, "q")
assert backend == "piha"
assert embedding[0] == 0.02
assert solaria.embed_calls == 1
async def test_mid_embed_failure_opens_circuit_for_subsequent_requests(self):
# The one-shot flip must persist: after a mid-embed failure, requests inside the
# same TTL window go straight to the fallback -- no re-probe, no primary retry.
solaria = _FakeBackend(embed_exc=aiohttp.ClientConnectionError("died mid-embed"))
piha = _FakeBackend()
clock = _FakeClock()
router = _router(clock=clock)
session = _FakeSession({PRIMARY: solaria, FALLBACK: piha})
await router.embed(session, "q1") # probe says up -> embed dies -> flip to down
tags_after_first = solaria.tags_calls
clock.now += 10 # still inside the TTL window the flip opened
_, backend = await router.embed(session, "q2")
assert backend == "piha"
assert solaria.embed_calls == 1 # primary never retried inside the window
assert solaria.tags_calls == tags_after_first # and never re-probed either
async def test_fallback_embed_is_not_bounded_by_the_primary_timeout(self):
# Last-resort semantics: a Pi-5 CPU embed plus a cold model load is legitimately
# slow -- the fallback leg must NOT inherit the primary's hard timeout, or "slow
# but alive" would turn back into "dead".
solaria = _FakeBackend(down=True)
piha = _FakeBackend(embed_delay=0.2, vector_value=0.02)
session = _FakeSession({PRIMARY: solaria, FALLBACK: piha})
router = _router(primary_embed_timeout_s=0.05)
embedding, backend = await router.embed(session, "q")
assert backend == "piha"
assert embedding[0] == 0.02
async def test_down_verdict_is_cached_and_skips_primary_until_ttl_expires(self):
solaria = _FakeBackend(down=True)
piha = _FakeBackend()
clock = _FakeClock()
router = _router(clock=clock)
session = _FakeSession({PRIMARY: solaria, FALLBACK: piha})
await router.embed(session, "q1")
probes = solaria.tags_calls
clock.now += 10 # still inside TTL -> no re-probe, straight to fallback
_, backend = await router.embed(session, "q2")
assert backend == "piha"
assert solaria.tags_calls == probes
async def test_traffic_returns_to_primary_after_ttl_expiry(self):
# Test C from the task spec: SOLARIA comes back -> within one TTL window the
# router re-probes and routes to the GPU again.
solaria = _FakeBackend(down=True)
piha = _FakeBackend()
clock = _FakeClock()
router = _router(clock=clock)
session = _FakeSession({PRIMARY: solaria, FALLBACK: piha})
_, backend = await router.embed(session, "q1")
assert backend == "piha"
solaria.down = False # SOLARIA wakes up
clock.now += 31 # TTL (30 s) expired
_, backend = await router.embed(session, "q2")
assert backend == "solaria"
class TestNoUsableBackend:
async def test_primary_down_without_fallback_raises_backend_error(self):
solaria = _FakeBackend(down=True)
session = _FakeSession({PRIMARY: solaria})
with pytest.raises(EmbedBackendError, match="no EMBED_FALLBACK_URL"):
await _router(fallback_url=None).embed(session, "q")
async def test_both_backends_down_raises_backend_error(self):
session = _FakeSession({PRIMARY: _FakeBackend(down=True), FALLBACK: _FakeBackend(down=True)})
with pytest.raises(EmbedBackendError, match="unreachable"):
await _router().embed(session, "q")
class TestModelInvariant:
async def test_fallback_without_bge_m3_is_a_loud_error_not_a_silent_embed(self):
solaria = _FakeBackend(down=True)
piha = _FakeBackend(models=["llama3:8b"])
session = _FakeSession({PRIMARY: solaria, FALLBACK: piha})
with pytest.raises(ModelMismatchError, match="bge-m3"):
await _router().embed(session, "q")
assert piha.embed_calls == 0 # never embedded in the wrong vector space
async def test_primary_without_bge_m3_fails_over_to_verified_fallback(self):
solaria = _FakeBackend(models=["llama3:8b"])
piha = _FakeBackend()
session = _FakeSession({PRIMARY: solaria, FALLBACK: piha})
_, backend = await _router().embed(session, "q")
assert backend == "piha"
assert solaria.embed_calls == 0
class TestStatusReporting:
async def test_primary_status_up_and_fallback_status_up(self):
session = _FakeSession({PRIMARY: _FakeBackend(), FALLBACK: _FakeBackend()})
router = _router()
assert await router.primary_status(session) == "up"
assert await router.fallback_status(session) == "up"
async def test_fallback_status_unconfigured_without_fallback_url(self):
session = _FakeSession({PRIMARY: _FakeBackend()})
assert await _router(fallback_url=None).fallback_status(session) == "unconfigured"
async def test_primary_status_down_when_probe_fails(self):
session = _FakeSession({PRIMARY: _FakeBackend(down=True), FALLBACK: _FakeBackend()})
assert await _router().primary_status(session) == "down"