feat(health): gate routing event-driven on connection drop, not just periodic poll (#300)
HealthMonitor's periodic poll took ~18s to notice a dead provider — long after a retry had already re-selected it and died. Health needs to GATE routing, not just log reactively. - InferenceRouter.reportFailure(providerId, reason): new default-no-op method; DefaultInferenceRouter implements it by writing Unavailable straight into its health cache, bypassing healthCheck()/TTL entirely. - SessionOrchestrator.runInference: on a connection-level exception (ConnectException/SocketException/IOException or a message matching "prematurely closed"/"connection refused"/"connection reset"), call reportFailure immediately so the very next route() call — the retry driven by #299 — sees the provider as down right away instead of re-selecting it and dying again. Pairs with #299: routing now (1) reacts to a connection drop instantly and (2) waits/backs off for the capability to recover before declaring terminal. Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01GeyGFXczJb8RUWGBKmkm6G
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@@ -59,6 +59,16 @@ class DefaultInferenceRouter(
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fresh
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}
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// Bypasses healthCheck()/TTL entirely — writes Unavailable straight into the cache so the very
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// next route() call gates on it, closing the ~18s reactive-poll lag (#300). A later cache-TTL
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// expiry or the bounded-wait re-check in route() will naturally pick the provider back up once
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// its own healthCheck() reports healthy again.
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override suspend fun reportFailure(providerId: ProviderId, reason: String) {
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lockFor(providerId).withLock {
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mapMutex.withLock { cache[providerId] = HealthEntry(ProviderHealth.Unavailable(reason), timeSource.markNow()) }
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}
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}
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override suspend fun route(stageId: StageId, requiredCapabilities: Set<ModelCapability>): InferenceProvider {
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val candidates = requiredCapabilities
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.flatMap { registry.resolve(it) }
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@@ -39,6 +39,14 @@ interface InferenceRouter {
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requiredCapabilities: Set<ModelCapability>,
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modelId: String?,
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): InferenceProvider = route(stageId, requiredCapabilities)
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/**
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* Event-driven health gate: called the moment a connection-level failure is observed on
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* [providerId] (e.g. mid-request connection drop), so the NEXT route() call sees it as
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* unavailable immediately instead of waiting for the next periodic health poll/cache TTL to
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* catch up. Default no-op for routers that don't cache health.
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*/
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suspend fun reportFailure(providerId: com.correx.core.events.types.ProviderId, reason: String) = Unit
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}
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class NoEligibleProviderException(
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+20
@@ -409,6 +409,13 @@ abstract class SessionOrchestrator(
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} catch (e: CancellationException) {
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throw e // never swallow
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} catch (e: Exception) {
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if (isConnectionLevelFailure(e)) {
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// Mark it down NOW instead of waiting for the next periodic health poll (~18s lag,
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// see #300) — the retry's route() call must see this provider as unavailable
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// immediately so it gates/waits (#299) rather than instantly re-selecting the dead
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// provider again.
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inferenceRouter.reportFailure(provider.id, e.message ?: "connection failure")
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}
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emit(
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sessionId,
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InferenceFailedEvent(
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@@ -423,6 +430,19 @@ abstract class SessionOrchestrator(
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}
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}
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// Connection-level failures (provider crashed/restarting mid-request) should gate routing
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// immediately; other failures (bad request, model error, HTTP 4xx) should not mark the
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// provider down since the provider itself is still reachable.
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private fun isConnectionLevelFailure(e: Exception): Boolean {
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val message = e.message.orEmpty()
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return e is java.net.ConnectException ||
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e is java.net.SocketException ||
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e is java.io.IOException || // covers ktor/CIO's IOException, which extends java.io.IOException on the JVM
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message.contains("prematurely closed", ignoreCase = true) ||
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message.contains("connection refused", ignoreCase = true) ||
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message.contains("connection reset", ignoreCase = true)
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}
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// --- token estimation ---
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internal open suspend fun estimateTokens(content: String): Int {
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+24
@@ -213,4 +213,28 @@ class DefaultInferenceRouterTest {
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router.route(stage, setOf(ModelCapability.ToolCalling))
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}
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}
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// ── event-driven health gating (#300) ─────────────────────────────────────
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@Test
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fun `reportFailure gates the very next route call without waiting for a health poll`(): Unit = runBlocking {
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var healthCheckCount = 0
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val alwaysClaimsHealthy = object : InferenceProvider by provider("a", ModelCapability.General) {
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override suspend fun healthCheck(): ProviderHealth {
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healthCheckCount++
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return ProviderHealth.Healthy // the provider's own health probe hasn't caught up yet
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}
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}
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val backup = provider("b", ModelCapability.General)
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val router = DefaultInferenceRouter(registryOf(alwaysClaimsHealthy, backup), firstStrategy())
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// Sanity: before reportFailure, routes to the first (still "healthy") provider.
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assertSame(alwaysClaimsHealthy, router.route(stage, setOf(ModelCapability.General)))
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router.reportFailure(alwaysClaimsHealthy.id, "connection reset")
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// Immediately after — no delay, no waiting for the next poll — routing must avoid it.
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val result = router.route(stage, setOf(ModelCapability.General))
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assertSame(backup, result)
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}
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}
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@@ -43,11 +43,14 @@ import com.correx.core.inference.InferenceProvider
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import com.correx.core.inference.InferenceRepository
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import com.correx.core.inference.InferenceRequest
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import com.correx.core.inference.InferenceResponse
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import com.correx.core.inference.DefaultInferenceRouter
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import com.correx.core.inference.InferenceRouter
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import com.correx.core.inference.InferenceState
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import com.correx.core.inference.ModelCapability
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import com.correx.core.inference.NoEligibleProviderException
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import com.correx.core.inference.ProviderHealth
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import com.correx.core.inference.ProviderRegistry
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import com.correx.core.inference.RoutingStrategy
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import com.correx.core.inference.Token
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import com.correx.core.inference.TokenUsage
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import com.correx.core.inference.Tokenizer
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@@ -253,6 +256,48 @@ class SessionOrchestratorIntegrationTest {
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assertTrue(events.none { it.payload is WorkflowFailedEvent })
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}
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@Test
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fun `connection-level inference failure gates routing away from the dead provider immediately (#300)`(): Unit =
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runBlocking {
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val sessionId = SessionId("s2c")
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val config = OrchestrationConfig(
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retryPolicy = RetryPolicy(maxAttempts = 3, backoffMs = 0),
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)
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val graph = threeStageGraph()
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val dead = MockInferenceProvider(
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id = ProviderId("dead"),
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forcedFailure = "Failed to parse HTTP response: the server prematurely closed the connection",
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)
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val backup = MockInferenceProvider(id = ProviderId("backup"))
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// Router's own health probe (dead.healthCheck()) still reports Healthy — it hasn't
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// polled yet — so only the event-driven reportFailure() from the orchestrator's catch
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// block (not the periodic poll) can gate the retry away from `dead`.
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val registry = object : ProviderRegistry {
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override fun register(provider: com.correx.core.inference.InferenceProvider) = Unit
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override fun resolve(capability: ModelCapability) = listOf(dead, backup)
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override fun listAll() = listOf(dead, backup)
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override suspend fun healthCheckAll() = mapOf(dead.id to ProviderHealth.Healthy, backup.id to ProviderHealth.Healthy)
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}
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val router = DefaultInferenceRouter(
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registry = registry,
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strategy = RoutingStrategy { candidates, _ -> candidates.first() },
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)
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val recoveringOrchestrator = DefaultSessionOrchestrator(
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repositories = repositories,
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engines = engines.copy(inferenceRouter = router),
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retryCoordinator = retryCoordinator,
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artifactStore = artifactStore,
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decisionJournalRepository = decisionJournalRepository,
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)
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recoveringOrchestrator.run(sessionId, graph, config)
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val events = eventStore.read(sessionId)
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assertNotNull(events.find { it.payload is WorkflowCompletedEvent })
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assertEquals(1, dead.inferCallCount) { "dead provider should only be attempted once, then gated out" }
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}
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@Test
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fun `stage that matches no transition retries through the budget before failing`(): Unit = runBlocking {
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val sessionId = SessionId("s-no-transition-retry")
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