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okhttp/src/main/kotlin/okhttp3/internal/http/RetryAndFollowUpInterceptor.kt
// e.g. a certificate pinning error. return false } // An example of one we might want to retry with a different route is a problem connecting to a // proxy and would manifest as a standard IOException. Unless it is one we know we should not // retry, we return true and try a new route. return true } /**
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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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build.gradle.kts
toolVersion = rootProject.libs.versions.checkStyle.get() sourceSets = listOf(project.sourceSets["main"]) } // Animal Sniffer confirms we generally don't use APIs not on Java 8. configure<AnimalSnifferExtension> { annotation = "okhttp3.internal.SuppressSignatureCheck" sourceSets = listOf(project.sourceSets["main"]) }
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okhttp/src/test/java/okhttp3/internal/ws/WebSocketHttpTest.kt
) assertThat(webSocket.close(1000, null)).isFalse() } /** * There's no read timeout when reading the first byte of a new frame. But as soon as we start * reading a frame we enable the read timeout. In this test we have the server returning the first * byte of a frame but no more frames. */ @Test fun readTimeoutAppliesWithinFrames() { webServer.dispatcher =
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okhttp/src/main/kotlin/okhttp3/internal/ws/RealWebSocket.kt
} } companion object { private val ONLY_HTTP1 = listOf(Protocol.HTTP_1_1) /** * The maximum number of bytes to enqueue. Rather than enqueueing beyond this limit we tear down * the web socket! It's possible that we're writing faster than the peer can read. */ private const val MAX_QUEUE_SIZE = 16L * 1024 * 1024 // 16 MiB. /**
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okhttp/src/test/java/okhttp3/internal/ws/RealWebSocketTest.kt
client.listener.assertClosed(1000, "Goodbye!") } @Test fun clientCloseCancelsConnectionAfterTimeout() { client.webSocket!!.close(1000, "Hello!") taskFaker.runTasks() // Note: we don't process server frames so our client 'close' doesn't receive a server 'close'. assertThat(client.canceled).isFalse() taskFaker.advanceUntil(ns(RealWebSocket.CANCEL_AFTER_CLOSE_MILLIS - 1))
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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/CacheControl.kt
*/ class CacheControl internal constructor( /** * In a response, this field's name "no-cache" is misleading. It doesn't prevent us from caching * the response; it only means we have to validate the response with the origin server before * returning it. We can do this with a conditional GET. * * In a request, it means do not use a cache to satisfy the request. */ @get:JvmName("noCache") val noCache: Boolean,
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okhttp/src/test/java/okhttp3/DispatcherTest.kt
val a3 = client.newCall(newRequest("http://a/3")) val a4 = client.newCall(newRequest("http://a/4")) val t1 = makeSynchronousCall(a1) val t2 = makeSynchronousCall(a2) // We created 4 calls and started 2 of them. That's 2 running calls and 0 queued. ready.await() assertThat(dispatcher.runningCallsCount()).isEqualTo(2) assertThat(dispatcher.queuedCallsCount()).isEqualTo(0)
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okhttp-android/src/test/kotlin/okhttp3/android/AndroidLoggingTest.kt
assertThat(logs.map { it.msg }).containsExactly( "--> GET http://google.com/robots.txt", "<-- HTTP FAILED: java.net.UnknownHostException: shortcircuit", ) // We should consider if these logs should retain Exceptions assertThat(logs.last().throwable).isNull() } @Test fun testLoggingEventListener() { val client =
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