276 lines
9.6 KiB
Java
276 lines
9.6 KiB
Java
/*
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* Copyright 2012 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.channel.Channel;
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import io.netty.channel.ChannelFuture;
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import io.netty.channel.ChannelFutureListener;
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import io.netty.channel.ChannelHandlerContext;
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import io.netty.channel.ChannelInboundByteHandler;
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import io.netty.channel.ChannelOutboundMessageHandler;
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import io.netty.channel.ChannelPipeline;
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import io.netty.channel.ChannelPromise;
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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.HttpHeaders;
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import io.netty.handler.codec.http.HttpObjectAggregator;
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import io.netty.handler.codec.http.HttpRequestDecoder;
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import io.netty.handler.codec.http.HttpResponseEncoder;
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import io.netty.handler.codec.http.HttpServerCodec;
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import io.netty.util.internal.EmptyArrays;
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import io.netty.util.internal.StringUtil;
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import io.netty.util.internal.logging.InternalLogger;
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import io.netty.util.internal.logging.InternalLoggerFactory;
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import java.util.Collections;
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import java.util.LinkedHashSet;
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import java.util.Set;
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/**
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* Base class for server side web socket opening and closing handshakes
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*/
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public abstract class WebSocketServerHandshaker {
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protected static final InternalLogger logger = InternalLoggerFactory.getInstance(WebSocketServerHandshaker.class);
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private final String uri;
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private final String[] subprotocols;
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private final WebSocketVersion version;
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private final int maxFramePayloadLength;
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private String selectedSubprotocol;
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/**
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* Use this as wildcard to support all requested sub-protocols
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*/
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public final static String SUB_PROTOCOL_WILDCARD = "*";
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/**
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* Constructor specifying the destination web socket location
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*
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* @param version
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* the protocol version
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* @param uri
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* URL for web socket communications. e.g "ws://myhost.com/mypath". Subsequent web socket frames will be
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* sent to this URL.
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* @param subprotocols
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* CSV of supported protocols. Null if sub protocols not supported.
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* @param maxFramePayloadLength
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* Maximum length of a frame's payload
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*/
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protected WebSocketServerHandshaker(
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WebSocketVersion version, String uri, String subprotocols,
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int maxFramePayloadLength) {
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this.version = version;
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this.uri = uri;
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if (subprotocols != null) {
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String[] subprotocolArray = StringUtil.split(subprotocols, ',');
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for (int i = 0; i < subprotocolArray.length; i++) {
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subprotocolArray[i] = subprotocolArray[i].trim();
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}
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this.subprotocols = subprotocolArray;
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} else {
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this.subprotocols = EmptyArrays.EMPTY_STRINGS;
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}
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this.maxFramePayloadLength = maxFramePayloadLength;
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}
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/**
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* Returns the URL of the web socket
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*/
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public String uri() {
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return uri;
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}
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/**
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* Returns the CSV of supported sub protocols
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*/
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public Set<String> subprotocols() {
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Set<String> ret = new LinkedHashSet<String>();
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Collections.addAll(ret, subprotocols);
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return ret;
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}
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/**
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* Returns the version of the specification being supported
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*/
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public WebSocketVersion version() {
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return version;
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}
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/**
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* Gets the maximum length for any frame's payload.
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*
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* @return The maximum length for a frame's payload
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*/
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public int maxFramePayloadLength() {
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return maxFramePayloadLength;
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}
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/**
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* Performs the opening handshake
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*
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* @param channel
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* Channel
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* @param req
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* HTTP Request
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*/
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public ChannelFuture handshake(Channel channel, FullHttpRequest req) {
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return handshake(channel, req, null, channel.newPromise());
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}
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/**
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* Performs the opening handshake
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*
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* @param channel
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* Channel
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* @param req
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* HTTP Request
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* @param responseHeaders
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* Extra headers to add to the handshake response or {@code null} if no extra headers should be added
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* @param promise
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* the {@link ChannelPromise} to be notified when the opening handshake is done
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*/
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public final ChannelFuture handshake(Channel channel, FullHttpRequest req,
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HttpHeaders responseHeaders, final ChannelPromise promise) {
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if (logger.isDebugEnabled()) {
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logger.debug(String.format("Channel %s WS Version %s server handshake", version(), channel.id()));
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}
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FullHttpResponse response = newHandshakeResponse(req, responseHeaders);
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channel.write(response).addListener(new ChannelFutureListener() {
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@Override
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public void operationComplete(ChannelFuture future) throws Exception {
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if (future.isSuccess()) {
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ChannelPipeline p = future.channel().pipeline();
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if (p.get(HttpObjectAggregator.class) != null) {
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p.remove(HttpObjectAggregator.class);
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}
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ChannelHandlerContext ctx = p.context(HttpRequestDecoder.class);
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if (ctx == null) {
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// this means the user use a HttpServerCodec
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ctx = p.context(HttpServerCodec.class);
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if (ctx == null) {
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promise.setFailure(
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new IllegalStateException("No HttpDecoder and no HttpServerCodec in the pipeline"));
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return;
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}
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p.addBefore(ctx.name(), "wsencoder", newWebsocketDecoder());
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p.replace(ctx.name(), "wsdecoder", newWebSocketEncoder());
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} else {
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p.replace(ctx.name(), "wsdecoder", newWebsocketDecoder());
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p.replace(HttpResponseEncoder.class, "wsencoder", newWebSocketEncoder());
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}
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promise.setSuccess();
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} else {
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promise.setFailure(future.cause());
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}
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}
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});
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return promise;
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}
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/**
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* Returns a new {@link FullHttpResponse) which will be used for as response to the handshake request.
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*/
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protected abstract FullHttpResponse newHandshakeResponse(FullHttpRequest req,
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HttpHeaders responseHeaders);
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/**
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* Performs the closing handshake
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*
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* @param channel
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* Channel
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* @param frame
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* Closing Frame that was received
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*/
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public ChannelFuture close(Channel channel, CloseWebSocketFrame frame) {
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if (channel == null) {
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throw new NullPointerException("channel");
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}
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return close(channel, frame, channel.newPromise());
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}
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/**
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* Performs the closing handshake
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*
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* @param channel
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* Channel
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* @param frame
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* Closing Frame that was received
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* @param promise
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* the {@link ChannelPromise} to be notified when the closing handshake is done
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*/
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public ChannelFuture close(Channel channel, CloseWebSocketFrame frame, ChannelPromise promise) {
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return channel.write(frame, promise).addListener(ChannelFutureListener.CLOSE);
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}
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/**
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* Selects the first matching supported sub protocol
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*
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* @param requestedSubprotocols
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* CSV of protocols to be supported. e.g. "chat, superchat"
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* @return First matching supported sub protocol. Null if not found.
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*/
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protected String selectSubprotocol(String requestedSubprotocols) {
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if (requestedSubprotocols == null || subprotocols.length == 0) {
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return null;
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}
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String[] requestedSubprotocolArray = StringUtil.split(requestedSubprotocols, ',');
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for (String p: requestedSubprotocolArray) {
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String requestedSubprotocol = p.trim();
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for (String supportedSubprotocol: subprotocols) {
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if (SUB_PROTOCOL_WILDCARD.equals(supportedSubprotocol)
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|| requestedSubprotocol.equals(supportedSubprotocol)) {
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return requestedSubprotocol;
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}
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}
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}
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// No match found
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return null;
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}
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/**
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* Returns the selected subprotocol. Null if no subprotocol has been selected.
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* <p>
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* This is only available AFTER <tt>handshake()</tt> has been called.
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* </p>
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*/
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public String selectedSubprotocol() {
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return selectedSubprotocol;
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}
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protected void setSelectedSubprotocol(String value) {
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selectedSubprotocol = value;
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}
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/**
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* Returns the decoder to use after handshake is complete.
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*/
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protected abstract ChannelInboundByteHandler newWebsocketDecoder();
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/**
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* Returns the encoder to use after the handshake is complete.
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*/
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protected abstract ChannelOutboundMessageHandler<WebSocketFrame> newWebSocketEncoder();
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}
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