Only add port to HOST header value if needed
Motivation: We only need to add the port to the HOST header value if its not a standard port. Modifications: - Only add port if needed. - Fix parsing of ipv6 address which is enclosed by []. Result: Fixes [#6426].
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461f9a1212
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0514b0c61b
@ -22,7 +22,15 @@ import io.netty.util.AsciiString;
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* <a href="https://tools.ietf.org/html/rfc7230">rfc7230</a>.
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*/
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public final class HttpScheme {
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/**
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* Scheme for non-secure HTTP connection.
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*/
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public static final HttpScheme HTTP = new HttpScheme(80, "http");
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/**
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* Scheme for secure HTTP connection.
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*/
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public static final HttpScheme HTTPS = new HttpScheme(443, "https");
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private final int port;
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@ -33,9 +33,11 @@ import io.netty.handler.codec.http.HttpRequestEncoder;
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import io.netty.handler.codec.http.HttpResponse;
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import io.netty.handler.codec.http.HttpResponseDecoder;
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import io.netty.handler.codec.http.HttpScheme;
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import io.netty.util.NetUtil;
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import io.netty.util.ReferenceCountUtil;
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import io.netty.util.internal.ThrowableUtil;
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import java.net.InetSocketAddress;
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import java.net.URI;
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import java.nio.channels.ClosedChannelException;
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@ -448,18 +450,41 @@ public abstract class WebSocketClientHandshaker {
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// check if the URI contained a port if not set the correct one depending on the schema.
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// See https://github.com/netty/netty/pull/1558
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if (wsPort == -1) {
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return "wss".equals(wsURL.getScheme()) ? HttpScheme.HTTPS.port() : HttpScheme.HTTP.port();
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return WebSocketScheme.WSS.name().contentEquals(wsURL.getScheme())
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? WebSocketScheme.WSS.port() : WebSocketScheme.WS.port();
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}
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return wsPort;
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}
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static CharSequence websocketHostValue(URI wsURL) {
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int port = wsURL.getPort();
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if (port == -1) {
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return wsURL.getHost();
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}
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String host = wsURL.getHost();
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if (port == HttpScheme.HTTP.port()) {
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return HttpScheme.HTTP.name().contentEquals(wsURL.getScheme())
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|| WebSocketScheme.WS.name().contentEquals(wsURL.getScheme()) ?
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host : NetUtil.toSocketAddressString(host, port);
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}
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if (port == HttpScheme.HTTPS.port()) {
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return HttpScheme.HTTPS.name().contentEquals(wsURL.getScheme())
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|| WebSocketScheme.WSS.name().contentEquals(wsURL.getScheme()) ?
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host : NetUtil.toSocketAddressString(host, port);
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}
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// if the port is not standard (80/443) its needed to add the port to the header.
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// See http://tools.ietf.org/html/rfc6454#section-6.2
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return NetUtil.toSocketAddressString(InetSocketAddress.createUnresolved(host, port));
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}
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static CharSequence websocketOriginValue(String host, int wsPort) {
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String originValue = (wsPort == HttpScheme.HTTPS.port() ?
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HttpScheme.HTTPS.name() : HttpScheme.HTTP.name()) + "://" + host;
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if (wsPort != HttpScheme.HTTP.port() && wsPort != HttpScheme.HTTPS.port()) {
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// if the port is not standard (80/443) its needed to add the port to the header.
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// See http://tools.ietf.org/html/rfc6454#section-6.2
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return originValue + ':' + wsPort;
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return NetUtil.toSocketAddressString(originValue, wsPort);
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}
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return originValue;
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}
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@ -135,7 +135,7 @@ public class WebSocketClientHandshaker00 extends WebSocketClientHandshaker {
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HttpHeaders headers = request.headers();
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headers.add(HttpHeaderNames.UPGRADE, WEBSOCKET)
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.add(HttpHeaderNames.CONNECTION, HttpHeaderValues.UPGRADE)
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.add(HttpHeaderNames.HOST, host)
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.add(HttpHeaderNames.HOST, websocketHostValue(wsURL))
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.add(HttpHeaderNames.ORIGIN, websocketOriginValue(host, wsPort))
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.add(HttpHeaderNames.SEC_WEBSOCKET_KEY1, key1)
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.add(HttpHeaderNames.SEC_WEBSOCKET_KEY2, key2);
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@ -151,7 +151,7 @@ public class WebSocketClientHandshaker07 extends WebSocketClientHandshaker {
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headers.add(HttpHeaderNames.UPGRADE, HttpHeaderValues.WEBSOCKET)
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.add(HttpHeaderNames.CONNECTION, HttpHeaderValues.UPGRADE)
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.add(HttpHeaderNames.SEC_WEBSOCKET_KEY, key)
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.add(HttpHeaderNames.HOST, host)
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.add(HttpHeaderNames.HOST, websocketHostValue(wsURL))
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.add(HttpHeaderNames.SEC_WEBSOCKET_ORIGIN, websocketOriginValue(host, wsPort));
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String expectedSubprotocol = expectedSubprotocol();
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@ -152,7 +152,7 @@ public class WebSocketClientHandshaker08 extends WebSocketClientHandshaker {
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headers.add(HttpHeaderNames.UPGRADE, HttpHeaderValues.WEBSOCKET)
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.add(HttpHeaderNames.CONNECTION, HttpHeaderValues.UPGRADE)
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.add(HttpHeaderNames.SEC_WEBSOCKET_KEY, key)
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.add(HttpHeaderNames.HOST, host)
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.add(HttpHeaderNames.HOST, websocketHostValue(wsURL))
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.add(HttpHeaderNames.SEC_WEBSOCKET_ORIGIN, websocketOriginValue(host, wsPort));
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String expectedSubprotocol = expectedSubprotocol();
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@ -151,7 +151,7 @@ public class WebSocketClientHandshaker13 extends WebSocketClientHandshaker {
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headers.add(HttpHeaderNames.UPGRADE, HttpHeaderValues.WEBSOCKET)
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.add(HttpHeaderNames.CONNECTION, HttpHeaderValues.UPGRADE)
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.add(HttpHeaderNames.SEC_WEBSOCKET_KEY, key)
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.add(HttpHeaderNames.HOST, host + ':' + wsPort)
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.add(HttpHeaderNames.HOST, websocketHostValue(wsURL))
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.add(HttpHeaderNames.SEC_WEBSOCKET_ORIGIN, websocketOriginValue(host, wsPort));
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String expectedSubprotocol = expectedSubprotocol();
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@ -0,0 +1,69 @@
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/*
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* Copyright 2017 The Netty Project
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*
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* The Netty Project licenses this file to you under the Apache License,
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* version 2.0 (the "License"); you may not use this file except in compliance
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* with the License. You may obtain a copy of the License at:
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
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* WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the
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* License for the specific language governing permissions and limitations
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* under the License.
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*/
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package io.netty.handler.codec.http.websocketx;
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import io.netty.util.AsciiString;
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/**
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* Defines the common schemes used for the WebSocket protocol as defined by
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* <a href="https://tools.ietf.org/html/rfc6455">rfc6455</a>.
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*/
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public final class WebSocketScheme {
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/**
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* Scheme for non-secure WebSocket connection.
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*/
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public static final WebSocketScheme WS = new WebSocketScheme(80, "ws");
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/**
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* Scheme for secure WebSocket connection.
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*/
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public static final WebSocketScheme WSS = new WebSocketScheme(443, "wss");
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private final int port;
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private final AsciiString name;
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private WebSocketScheme(int port, String name) {
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this.port = port;
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this.name = new AsciiString(name);
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}
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public AsciiString name() {
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return name;
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}
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public int port() {
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return port;
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}
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@Override
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public boolean equals(Object o) {
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if (!(o instanceof WebSocketScheme)) {
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return false;
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}
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WebSocketScheme other = (WebSocketScheme) o;
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return other.port() == port && other.name().equals(name);
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}
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@Override
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public int hashCode() {
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return port * 31 + name.hashCode();
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}
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@Override
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public String toString() {
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return name.toString();
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}
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}
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@ -25,6 +25,7 @@ import io.netty.handler.codec.http.EmptyHttpHeaders;
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import io.netty.handler.codec.http.FullHttpRequest;
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import io.netty.handler.codec.http.FullHttpResponse;
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import io.netty.handler.codec.http.HttpClientCodec;
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import io.netty.handler.codec.http.HttpHeaderNames;
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import io.netty.handler.codec.http.HttpObjectAggregator;
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import io.netty.handler.codec.http.HttpRequestEncoder;
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import io.netty.handler.codec.http.HttpResponseDecoder;
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@ -40,6 +41,37 @@ import static org.junit.Assert.assertTrue;
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public abstract class WebSocketClientHandshakerTest {
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protected abstract WebSocketClientHandshaker newHandshaker(URI uri);
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@Test
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public void testHostHeader() {
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testHostHeaderDefaultHttp(URI.create("ws://localhost:80/"), "localhost");
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testHostHeaderDefaultHttp(URI.create("http://localhost:80/"), "localhost");
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testHostHeaderDefaultHttp(URI.create("ws://[::1]:80/"), "[::1]");
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testHostHeaderDefaultHttp(URI.create("http://[::1]:80/"), "[::1]");
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testHostHeaderDefaultHttp(URI.create("ws://localhost:9999/"), "localhost:9999");
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testHostHeaderDefaultHttp(URI.create("http://localhost:9999/"), "localhost:9999");
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testHostHeaderDefaultHttp(URI.create("ws://[::1]:9999/"), "[::1]:9999");
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testHostHeaderDefaultHttp(URI.create("http://[::1]:9999/"), "[::1]:9999");
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testHostHeaderDefaultHttp(URI.create("wss://localhost:443/"), "localhost");
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testHostHeaderDefaultHttp(URI.create("https://localhost:443/"), "localhost");
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testHostHeaderDefaultHttp(URI.create("wss://[::1]:443/"), "[::1]");
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testHostHeaderDefaultHttp(URI.create("https://[::1]:443/"), "[::1]");
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testHostHeaderDefaultHttp(URI.create("wss://localhost:9999/"), "localhost:9999");
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testHostHeaderDefaultHttp(URI.create("https://localhost:9999/"), "localhost:9999");
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testHostHeaderDefaultHttp(URI.create("wss://[::1]:9999/"), "[::1]:9999");
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testHostHeaderDefaultHttp(URI.create("https://[::1]:9999/"), "[::1]:9999");
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}
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private void testHostHeaderDefaultHttp(URI uri, String expected) {
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WebSocketClientHandshaker handshaker = newHandshaker(uri);
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FullHttpRequest request = handshaker.newHandshakeRequest();
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try {
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assertEquals(expected, request.headers().get(HttpHeaderNames.HOST));
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} finally {
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request.release();
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}
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}
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@Test
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public void testRawPath() {
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URI uri = URI.create("ws://localhost:9999/path%20with%20ws");
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@ -960,14 +960,27 @@ public final class NetUtil {
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return sb.append(':').append(port).toString();
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}
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private static StringBuilder newSocketAddressStringBuilder(String hostString, String port, boolean ipv4) {
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/**
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* Returns the {@link String} representation of a host port combo.
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*/
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public static String toSocketAddressString(String host, int port) {
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String portStr = String.valueOf(port);
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return newSocketAddressStringBuilder(
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host, portStr, isValidIpV4Address(host)).append(portStr).toString();
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}
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private static StringBuilder newSocketAddressStringBuilder(String host, String port, boolean ipv4) {
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int hostLen = host.length();
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if (ipv4) {
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// Need to include enough space for hostString:port.
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return new StringBuilder(hostString.length() + 1 + port.length()).append(hostString);
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return new StringBuilder(hostLen + 1 + port.length()).append(host);
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}
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// Need to include enough space for [hostString]:port.
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return new StringBuilder(
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hostString.length() + 3 + port.length()).append('[').append(hostString).append(']');
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StringBuilder stringBuilder = new StringBuilder(hostLen + 3 + port.length());
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if (hostLen > 1 && host.charAt(0) == '[' && host.charAt(hostLen - 1) == ']') {
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return stringBuilder.append(host);
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}
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return stringBuilder.append('[').append(host).append(']');
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}
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/**
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