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mockwebserver/README.md
testing everything. You can even copy & paste HTTP responses from your real web server to create representative test cases. Or test that your code survives in awkward-to-reproduce situations like 500 errors or slow-loading responses. ### Example Use MockWebServer the same way that you use mocking frameworks like [Mockito](https://github.com/mockito/mockito): 1. Script the mocks. 2. Run application code.
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okhttp/src/test/java/okhttp3/WholeOperationTimeoutTest.kt
} @Test fun timeoutWritingRequest() { server.enqueue(MockResponse()) val request = Request.Builder() .url(server.url("/")) .post(sleepingRequestBody(500)) .build() val call = client.newCall(request) call.timeout().timeout(250, TimeUnit.MILLISECONDS) assertFailsWith<IOException> { call.execute() }.also { expected ->
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okhttp/src/test/java/okhttp3/URLConnectionTest.kt
assertThat(server.takeRequest().sequenceNumber).isEqualTo(0) // Give the server time to enact the socket policy if it's one that could happen after the // client has received the response. Thread.sleep(500) val response2 = getResponse(newRequest("/b")) response1.body.source().timeout().timeout(100, TimeUnit.MILLISECONDS) assertContent("This comes after a busted connection", response2)
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okhttp/src/test/java/okhttp3/internal/ws/WebSocketHttpTest.kt
private val serverListener = WebSocketRecorder("server") private val random = Random(0) private var client = clientTestRule.newClientBuilder() .writeTimeout(Duration.ofMillis(500)) .readTimeout(Duration.ofMillis(500)) .addInterceptor( Interceptor { chain: Interceptor.Chain -> val response = chain.proceed(chain.request()) // Ensure application interceptors never see a null body.
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okhttp/src/test/java/okhttp3/internal/http/ThreadInterruptTest.kt
.throttleBody((64 * 1024).toLong(), 125, TimeUnit.MILLISECONDS), ) // 500 Kbps server.start() val call = client.newCall( Request.Builder() .url(server.url("/")) .build(), ) val response = call.execute() interruptLater(500) val responseBody = response.body.byteStream() val buffer = ByteArray(1024)
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okhttp/src/test/java/okhttp3/internal/ws/RealWebSocketTest.kt
client.listener.assertFailure(IOException::class.java, "source is closed") assertThat(client.closed).isTrue() } @Test fun pingOnInterval() { client.initWebSocket(random, pingIntervalMillis = 500) taskFaker.advanceUntil(ns(500L)) server.processNextFrame() // Ping. client.processNextFrame() // Pong. taskFaker.advanceUntil(ns(1000L)) server.processNextFrame() // Ping.
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okhttp/src/test/java/okhttp3/internal/concurrent/TaskRunnerRealBackendTest.kt
throw RuntimeException("boom!") } queue.schedule("task", TimeUnit.MILLISECONDS.toNanos(200)) { log.put("normal task running") return@schedule -1L } queue.idleLatch().await(500, TimeUnit.MILLISECONDS) assertThat(log.take()).isEqualTo("failing task running") assertThat(log.take()).isEqualTo("uncaught exception: java.lang.RuntimeException: boom!")
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okhttp/src/test/java/okhttp3/internal/http2/HttpOverHttp2Test.kt
fun pingsTransmitted( protocol: Protocol, mockWebServer: MockWebServer, ) { setUp(protocol, mockWebServer) // Ping every 500 ms, starting at 500 ms. client = client.newBuilder() .pingInterval(Duration.ofMillis(500)) .build() // Delay the response to give 1 ping enough time to be sent and replied to. server.enqueue( MockResponse.Builder()
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okhttp-sse/src/test/java/okhttp3/sse/internal/EventSourceHttpTest.kt
client = client.newBuilder() .callTimeout(250, TimeUnit.MILLISECONDS) .build() server.enqueue( MockResponse.Builder() .bodyDelay(500, TimeUnit.MILLISECONDS) .setHeader("content-type", "text/event-stream") .body("data: hey\n\n") .build(), ) val source = newEventSource()
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okhttp/src/test/java/okhttp3/DuplexTest.kt
} @Test fun fullCallTimeoutAppliesToSetup() { enableProtocol(Protocol.HTTP_2) server.enqueue( MockResponse.Builder() .headersDelay(500, TimeUnit.MILLISECONDS) .build(), ) val request = Request.Builder() .url(server.url("/")) .post(AsyncRequestBody()) .build()
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