package io.netty.channel.unix;
import io.netty.buffer.ByteBufAllocator;
import io.netty.util.internal.ObjectUtil;
import java.nio.channels.WritableByteChannel;
public abstract class SocketWritableByteChannel implements WritableByteChannel {
private final FileDescriptor fd;
protected SocketWritableByteChannel(FileDescriptor fd) {
this.fd = ObjectUtil.checkNotNull(fd, "fd");
}
@Override
public final int write(java.nio.ByteBuffer src) throws java.io.IOException {
final int written;
int position = src.position();
int limit = src.limit();
if (src.isDirect()) {
written = fd.write(src, position, src.limit());
} else {
final int readableBytes = limit - position;
io.netty.buffer.ByteBuf buffer = null;
try {
if (readableBytes == 0) {
buffer = io.netty.buffer.Unpooled.EMPTY_BUFFER;
} else {
final ByteBufAllocator alloc = alloc();
if (alloc.isDirectBufferPooled()) {
buffer = alloc.directBuffer(readableBytes);
} else {
buffer = io.netty.buffer.ByteBufUtil.threadLocalDirectBuffer();
if (buffer == null) {
buffer = io.netty.buffer.Unpooled.directBuffer(readableBytes);
}
}
}
buffer.writeBytes(src.duplicate());
java.nio.ByteBuffer nioBuffer = buffer.internalNioBuffer(buffer.readerIndex(), readableBytes);
written = fd.write(nioBuffer, nioBuffer.position(), nioBuffer.limit());
} finally {
if (buffer != null) {
buffer.release();
}
}
}
if (written > 0) {
src.position(position + written);
}
return written;
}
@Override
public final boolean isOpen() {
return fd.isOpen();
}
@Override
public final void close() throws java.io.IOException {
fd.close();
}
protected abstract ByteBufAllocator alloc();
}