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Results 1 - 10 of 16 for we (0.11 sec)
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okhttp/src/main/kotlin/okhttp3/internal/connection/RealConnection.kt
lock.assertHeld() // If this connection is not accepting new exchanges, we're done. if (calls.size >= allocationLimit || noNewExchanges) return false // If the non-host fields of the address don't overlap, we're done. if (!this.route.address.equalsNonHost(address)) return false // If the host exactly matches, we're done: this connection can carry the address.
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okhttp/src/main/kotlin/okhttp3/internal/connection/RealCall.kt
if (toClose != null) { connection.connectionListener.connectionClosed(connection) } } else { check(toClose == null) // If we still have a connection we shouldn't be closing any sockets. } } val result = timeoutExit(e) if (e != null) { eventListener.callFailed(this, result!!) } else {
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okhttp/src/main/kotlin/okhttp3/internal/connection/ConnectPlan.kt
return tunnelResult } } if (route.address.sslSocketFactory != null) { // Assume the server won't send a TLS ServerHello until we send a TLS ClientHello. If // that happens, then we will have buffered bytes that are needed by the SSLSocket! // This check is imperfect: it doesn't tell us whether a handshake will succeed, just
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okhttp/src/main/kotlin/okhttp3/internal/concurrent/TaskRunner.kt
private var coordinatorWakeUpAt = 0L /** * When we need a new thread to run tasks, we call [Backend.execute]. A few microseconds later we * expect a newly-started thread to call [Runnable.run]. We shouldn't request new threads until * the already-requested ones are in service, otherwise we might create more threads than we need. * * We use [executeCallCount] and [runCallCount] to defend against starting more threads than we
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okhttp-testing-support/src/main/kotlin/okhttp3/TestValueFactory.kt
import okhttp3.tls.internal.TlsUtil.localhost /** * OkHttp is usually tested with functional tests: these use public APIs to confirm behavior against * MockWebServer. In cases where logic is particularly tricky, we use unit tests. This class makes * it easy to get sample values to use in such tests. * * This class is pretty fast and loose with default values: it attempts to provide values that are
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okhttp/src/main/kotlin/okhttp3/internal/connection/RealRoutePlanner.kt
if (retryRoute != null) { // Lock in the route because retryRoute() is racy and we don't want to call it twice. nextRouteToTry = retryRoute return true } } // If we have a routes left, use 'em. if (routeSelection?.hasNext() == true) return true // If we haven't initialized the route selector yet, assume it'll have at least one route.
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okhttp/src/main/kotlin/okhttp3/internal/http2/Http2Connection.kt
* * We need to apply the settings and ack them atomically. This is because some HTTP/2 * implementations (nghttp2) forbid peers from taking advantage of settings before they have * acknowledged! In particular, we shouldn't send frames that assume a new `initialWindowSize` * until we send the frame that acknowledges this new size. *
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okhttp-testing-support/src/main/kotlin/okhttp3/internal/concurrent/TaskFaker.kt
try { while (currentTask != self) { taskRunner.condition.await() } } finally { serialTaskQueue.remove(yieldCompleteTask) } // If we're yielding until we're exhausted and a task run, keep going until a task doesn't run. if (strategy == ResumePriority.AfterOtherTasks && otherTasksStarted) { return yieldUntil(strategy, condition) } }
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okhttp/src/main/kotlin/okhttp3/internal/connection/RealConnectionPool.kt
// we find them, regardless of what the address policies need. // // 2. EVICTABLE: Connections not required by any address policy. This matches connections that // don't participate in any policy, plus connections whose policies won't be violated if the // connection is closed. We only close these if the idle connection limit is exceeded. //
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okhttp/src/main/kotlin/okhttp3/internal/http2/Http2Stream.kt
} if (errorExceptionToDeliver != null) { // We defer throwing the exception until now so that we can refill the connection // flow-control window. This is necessary because we don't transmit window updates until // the application reads the data. If we throw this prior to updating the connection // flow-control window, we risk having it go to 0 preventing the server from sending data.
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