/*
 * Copyright 2015 The Netty Project
 *
 * The Netty Project licenses this file to you under the Apache License,
 * version 2.0 (the "License"); you may not use this file except in compliance
 * with the License. You may obtain a copy of the License at:
 *
 *   http://www.apache.org/licenses/LICENSE-2.0
 *
 * Unless required by applicable law or agreed to in writing, software
 * distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
 * WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the
 * License for the specific language governing permissions and limitations
 * under the License.
 */
package io.netty.channel.epoll;

import io.netty.buffer.ByteBufAllocator;
import io.netty.channel.ChannelException;
import io.netty.channel.ChannelOption;
import io.netty.channel.MessageSizeEstimator;
import io.netty.channel.RecvByteBufAllocator;
import io.netty.channel.WriteBufferWaterMark;
import io.netty.channel.socket.ServerSocketChannelConfig;
import io.netty.util.NetUtil;

import java.io.IOException;
import java.util.Map;

import static io.netty.channel.ChannelOption.SO_BACKLOG;
import static io.netty.channel.ChannelOption.SO_RCVBUF;
import static io.netty.channel.ChannelOption.SO_REUSEADDR;

public class EpollServerChannelConfig extends EpollChannelConfig implements ServerSocketChannelConfig {
    protected final AbstractEpollChannel channel;
    private volatile int backlog = NetUtil.SOMAXCONN;
    private volatile int pendingFastOpenRequestsThreshold;

    EpollServerChannelConfig(AbstractEpollChannel channel) {
        super(channel);
        this.channel = channel;
    }

    @Override
    public Map<ChannelOption<?>, Object> getOptions() {
        return getOptions(super.getOptions(), SO_RCVBUF, SO_REUSEADDR, SO_BACKLOG, EpollChannelOption.TCP_FASTOPEN);
    }

    @SuppressWarnings("unchecked")
    @Override
    public <T> T getOption(ChannelOption<T> option) {
        if (option == SO_RCVBUF) {
            return (T) Integer.valueOf(getReceiveBufferSize());
        }
        if (option == SO_REUSEADDR) {
            return (T) Boolean.valueOf(isReuseAddress());
        }
        if (option == SO_BACKLOG) {
            return (T) Integer.valueOf(getBacklog());
        }
        if (option == EpollChannelOption.TCP_FASTOPEN) {
            return (T) Integer.valueOf(getTcpFastopen());
        }
        return super.getOption(option);
    }

    @Override
    public <T> boolean setOption(ChannelOption<T> option, T value) {
        validate(option, value);

        if (option == SO_RCVBUF) {
            setReceiveBufferSize((Integer) value);
        } else if (option == SO_REUSEADDR) {
            setReuseAddress((Boolean) value);
        } else if (option == SO_BACKLOG) {
            setBacklog((Integer) value);
        } else if (option == EpollChannelOption.TCP_FASTOPEN) {
            setTcpFastopen((Integer) value);
        } else {
            return super.setOption(option, value);
        }

        return true;
    }

    public boolean isReuseAddress() {
        try {
            return channel.socket.isReuseAddress();
        } catch (IOException e) {
            throw new ChannelException(e);
        }
    }

    public EpollServerChannelConfig setReuseAddress(boolean reuseAddress) {
        try {
            channel.socket.setReuseAddress(reuseAddress);
            return this;
        } catch (IOException e) {
            throw new ChannelException(e);
        }
    }

    public int getReceiveBufferSize() {
        try {
            return channel.socket.getReceiveBufferSize();
        } catch (IOException e) {
            throw new ChannelException(e);
        }
    }

    public EpollServerChannelConfig setReceiveBufferSize(int receiveBufferSize) {
        try {
            channel.socket.setReceiveBufferSize(receiveBufferSize);
            return this;
        } catch (IOException e) {
            throw new ChannelException(e);
        }
    }

    public int getBacklog() {
        return backlog;
    }

    public EpollServerChannelConfig setBacklog(int backlog) {
        if (backlog < 0) {
            throw new IllegalArgumentException("backlog: " + backlog);
        }
        this.backlog = backlog;
        return this;
    }

    
Returns threshold value of number of pending for fast open connect.
See Also:
/** * Returns threshold value of number of pending for fast open connect. * * @see <a href="https://tools.ietf.org/html/rfc7413#appendix-A.2">RFC 7413 Passive Open</a> */
public int getTcpFastopen() { return pendingFastOpenRequestsThreshold; }
Enables tcpFastOpen on the server channel. If the underlying os doesnt support TCP_FASTOPEN setting this has no effect. This has to be set before doing listen on the socket otherwise this takes no effect.
Params:
  • pendingFastOpenRequestsThreshold – number of requests to be pending for fastopen at a given point in time for security. @see RFC 7413 Passive Open
See Also:
/** * Enables tcpFastOpen on the server channel. If the underlying os doesnt support TCP_FASTOPEN setting this has no * effect. This has to be set before doing listen on the socket otherwise this takes no effect. * * @param pendingFastOpenRequestsThreshold number of requests to be pending for fastopen at a given point in time * for security. @see <a href="https://tools.ietf.org/html/rfc7413#appendix-A.2">RFC 7413 Passive Open</a> * * @see <a href="https://tools.ietf.org/html/rfc7413">RFC 7413 TCP FastOpen</a> */
public EpollServerChannelConfig setTcpFastopen(int pendingFastOpenRequestsThreshold) { if (this.pendingFastOpenRequestsThreshold < 0) { throw new IllegalArgumentException("pendingFastOpenRequestsThreshold: " + pendingFastOpenRequestsThreshold); } this.pendingFastOpenRequestsThreshold = pendingFastOpenRequestsThreshold; return this; } @Override public EpollServerChannelConfig setPerformancePreferences(int connectionTime, int latency, int bandwidth) { return this; } @Override public EpollServerChannelConfig setConnectTimeoutMillis(int connectTimeoutMillis) { super.setConnectTimeoutMillis(connectTimeoutMillis); return this; } @Override @Deprecated public EpollServerChannelConfig setMaxMessagesPerRead(int maxMessagesPerRead) { super.setMaxMessagesPerRead(maxMessagesPerRead); return this; } @Override public EpollServerChannelConfig setWriteSpinCount(int writeSpinCount) { super.setWriteSpinCount(writeSpinCount); return this; } @Override public EpollServerChannelConfig setAllocator(ByteBufAllocator allocator) { super.setAllocator(allocator); return this; } @Override public EpollServerChannelConfig setRecvByteBufAllocator(RecvByteBufAllocator allocator) { super.setRecvByteBufAllocator(allocator); return this; } @Override public EpollServerChannelConfig setAutoRead(boolean autoRead) { super.setAutoRead(autoRead); return this; } @Override @Deprecated public EpollServerChannelConfig setWriteBufferHighWaterMark(int writeBufferHighWaterMark) { super.setWriteBufferHighWaterMark(writeBufferHighWaterMark); return this; } @Override @Deprecated public EpollServerChannelConfig setWriteBufferLowWaterMark(int writeBufferLowWaterMark) { super.setWriteBufferLowWaterMark(writeBufferLowWaterMark); return this; } @Override public EpollServerChannelConfig setWriteBufferWaterMark(WriteBufferWaterMark writeBufferWaterMark) { super.setWriteBufferWaterMark(writeBufferWaterMark); return this; } @Override public EpollServerChannelConfig setMessageSizeEstimator(MessageSizeEstimator estimator) { super.setMessageSizeEstimator(estimator); return this; } @Override public EpollServerChannelConfig setEpollMode(EpollMode mode) { super.setEpollMode(mode); return this; } }