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mockwebserver/README.md
assertEquals("application/json; charset=utf-8", request.getHeader("Content-Type")); assertEquals("{}", request.getBody().readUtf8()); ``` #### Dispatcher By default MockWebServer uses a queue to specify a series of responses. Use a Dispatcher (`import okhttp3.mockwebserver.Dispatcher`) to handle requests using another policy. One natural policy is to dispatch on the request path.
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okhttp/src/main/kotlin/okhttp3/Authenticator.kt
* * The route is best effort, it currently may not always be provided even when logically * available. It may also not be provided when an authenticator is re-used manually in an * application interceptor, such as when implementing client-specific retries. */ @Throws(IOException::class) fun authenticate( route: Route?, response: Response, ): Request?
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okhttp-tls/src/main/kotlin/okhttp3/tls/internal/der/Certificate.kt
val critical: Boolean, val value: Any?, ) @IgnoreJRERequirement // As of AGP 3.4.1, D8 desugars API 24 hashCode methods. internal data class BasicConstraints( /** True if this certificate can be used as a Certificate Authority (CA). */ val ca: Boolean, /** The maximum number of intermediate CAs between this and leaf certificates. */ val maxIntermediateCas: Long?, )
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okhttp/src/test/java/okhttp3/internal/ws/WebSocketWriterTest.kt
assertFailsWith<IllegalArgumentException> { clientWriter.writeClose(1005, "Hello".encodeUtf8()) }.also { expected -> assertThat(expected.message).isEqualTo("Code 1005 is reserved and may not be used.") } } @Test fun serverEmptyPing() { serverWriter.writePing(EMPTY) assertData("8900") } @Test fun clientEmptyPing() { clientWriter.writePing(EMPTY)
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docs/features/events.md
### EventListener.Factory In the preceding example we used a field, `callStartNanos`, to track the elapsed time of each event. This is handy, but it won’t work if multiple calls are executing concurrently. To accommodate this, use a `Factory` to create a new `EventListener` instance for each `Call`. This allows each listener to keep call-specific state.
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okhttp/src/main/kotlin/okhttp3/internal/cache2/Relay.kt
var upstreamPos: Long, /** User-supplied additional data persisted with the source data. */ private val metadata: ByteString, /** The maximum size of [buffer]. */ val bufferMaxSize: Long, ) { /** The thread that currently has access to upstream. Possibly null. Guarded by this. */ var upstreamReader: Thread? = null /** * A buffer for [upstreamReader] to use when pulling bytes from upstream. Only the
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okhttp/src/main/kotlin/okhttp3/internal/-HostnamesCommon.kt
// Go through the address looking for the longest run of 0s. Each group is 2-bytes. // A run must be longer than one group (section 4.2.2). // If there are multiple equal runs, the first one must be used (section 4.2.3). var longestRunOffset = -1 var longestRunLength = 0 run { var i = 0 while (i < address.size) { val currentRunOffset = i
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okhttp/src/test/java/okhttp3/URLConnectionTest.kt
.header("User-Agent", "baz") .build(), ) assertContent("encrypted response from the origin server", response) val connect = server.takeRequest() assertThat(connect.headers["Private"]).isNull() assertThat(connect.headers["Proxy-Authorization"]).isNull() assertThat(connect.headers["User-Agent"]).isEqualTo(USER_AGENT)
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okhttp-tls/src/main/kotlin/okhttp3/tls/HeldCertificate.kt
* Certification Authority - G2". That certificate is used to verify the signature of the * intermediate certificate, "Entrust Certification Authority - L1M". The intermediate certificate * is used to verify the signature of the "www.squareup.com" certificate. * * This roles are reversed for client authentication. In that case the client has a private key and * a chain of certificates. The server uses a set of trusted root certificates to authenticate the
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okhttp/src/test/java/okhttp3/HttpUrlTest.kt
assertThat(parse("http://user@host/").username).isEqualTo("user") assertThat(parse("http://%F0%9F%8D%A9@host/").username).isEqualTo("\uD83C\uDF69") } @Test fun decodePassword() { assertThat(parse("http://user:password@host/").password).isEqualTo("password") assertThat(parse("http://user:@host/").password).isEqualTo("") assertThat(parse("http://user:%F0%9F%8D%A9@host/").password)
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