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Easy Redis Java client and Real-Time Data Platform. Valkey compatible. Sync/Async/RxJava3/Reactive API. Client side caching. Over 50 Redis based Java objects and services: JCache API, Apache Tomcat, Hibernate, Spring, Set, Multimap, SortedSet, Map, List, Queue, Deque, Semaphore, Lock, AtomicLong, Map Reduce, Bloom filter, Scheduler, RPC
/*
* Copyright 2018 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:
*
* https://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.resolver.dns;
import java.net.UnknownHostException;
import java.util.List;
import io.netty.channel.Channel;
import io.netty.channel.EventLoop;
import io.netty.handler.codec.dns.DnsQuestion;
import io.netty.handler.codec.dns.DnsRecord;
import io.netty.handler.codec.dns.DnsRecordType;
import io.netty.util.ReferenceCountUtil;
import io.netty.util.concurrent.Promise;
final class DnsRecordResolveContext extends DnsResolveContext {
DnsRecordResolveContext(DnsNameResolver parent, Channel channel,
Promise> originalPromise, DnsQuestion question, DnsRecord[] additionals,
DnsServerAddressStream nameServerAddrs, int allowedQueries) {
this(parent, channel, originalPromise, question.name(), question.dnsClass(),
new DnsRecordType[] { question.type() },
additionals, nameServerAddrs, allowedQueries);
}
private DnsRecordResolveContext(DnsNameResolver parent, Channel channel,
Promise> originalPromise,
String hostname, int dnsClass, DnsRecordType[] expectedTypes,
DnsRecord[] additionals,
DnsServerAddressStream nameServerAddrs,
int allowedQueries) {
super(parent, channel, originalPromise, hostname, dnsClass, expectedTypes,
additionals, nameServerAddrs, allowedQueries);
}
@Override
DnsResolveContext newResolverContext(DnsNameResolver parent, Channel channel,
Promise> originalPromise,
String hostname,
int dnsClass, DnsRecordType[] expectedTypes,
DnsRecord[] additionals,
DnsServerAddressStream nameServerAddrs,
int allowedQueries) {
return new DnsRecordResolveContext(parent, channel, originalPromise, hostname, dnsClass,
expectedTypes, additionals, nameServerAddrs, allowedQueries);
}
@Override
DnsRecord convertRecord(DnsRecord record, String hostname, DnsRecord[] additionals, EventLoop eventLoop) {
return ReferenceCountUtil.retain(record);
}
@Override
List filterResults(List unfiltered) {
return unfiltered;
}
@Override
boolean isCompleteEarly(DnsRecord resolved) {
return false;
}
@Override
boolean isDuplicateAllowed() {
return true;
}
@Override
void cache(String hostname, DnsRecord[] additionals, DnsRecord result, DnsRecord convertedResult) {
// Do not cache.
// XXX: When we implement cache, we would need to retain the reference count of the result record.
}
@Override
void cache(String hostname, DnsRecord[] additionals, UnknownHostException cause) {
// Do not cache.
// XXX: When we implement cache, we would need to retain the reference count of the result record.
}
@Override
DnsCnameCache cnameCache() {
// We don't use a cache here at all as we also don't cache if we end up using the DnsRecordResolverContext.
return NoopDnsCnameCache.INSTANCE;
}
}
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