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In fact, completely eviscerate cloneProjectedAtTime (to be removed in a followup CL) in favor of doing the projection of transfers and the loading of values from the superordinate domain at call sites. This is one of the issues that blocked the memcache audit work, since the load inside of cloneProjectedAtTime could not be controlled by the caller. Note: fixed a minor bug where a subordinate host created after its superordinate domain was last transferred should have lastTransferTime==null but was previously reporting the domain's lastTransferTime. ------------- Created by MOE: https://github.com/google/moe MOE_MIGRATED_REVID=149769125
155 lines
7.3 KiB
Java
155 lines
7.3 KiB
Java
// Copyright 2017 The Nomulus Authors. All Rights Reserved.
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// 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,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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package google.registry.flows.host;
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import static google.registry.flows.FlowUtils.validateClientIsLoggedIn;
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import static google.registry.flows.ResourceFlowUtils.verifyResourceDoesNotExist;
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import static google.registry.flows.host.HostFlowUtils.lookupSuperordinateDomain;
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import static google.registry.flows.host.HostFlowUtils.validateHostName;
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import static google.registry.flows.host.HostFlowUtils.verifySuperordinateDomainOwnership;
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import static google.registry.model.EppResourceUtils.createRepoId;
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import static google.registry.model.ofy.ObjectifyService.ofy;
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import static google.registry.util.CollectionUtils.isNullOrEmpty;
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import static google.registry.util.CollectionUtils.union;
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import com.google.common.base.Optional;
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import com.google.common.collect.ImmutableSet;
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import com.googlecode.objectify.Key;
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import google.registry.config.RegistryConfig.Config;
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import google.registry.dns.DnsQueue;
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import google.registry.flows.EppException;
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import google.registry.flows.EppException.ParameterValueRangeErrorException;
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import google.registry.flows.EppException.RequiredParameterMissingException;
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import google.registry.flows.ExtensionManager;
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import google.registry.flows.FlowModule.ClientId;
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import google.registry.flows.FlowModule.TargetId;
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import google.registry.flows.TransactionalFlow;
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import google.registry.model.ImmutableObject;
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import google.registry.model.domain.DomainResource;
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import google.registry.model.domain.metadata.MetadataExtension;
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import google.registry.model.eppinput.ResourceCommand;
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import google.registry.model.eppoutput.CreateData.HostCreateData;
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import google.registry.model.eppoutput.EppResponse;
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import google.registry.model.host.HostCommand.Create;
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import google.registry.model.host.HostResource;
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import google.registry.model.host.HostResource.Builder;
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import google.registry.model.index.EppResourceIndex;
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import google.registry.model.index.ForeignKeyIndex;
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import google.registry.model.ofy.ObjectifyService;
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import google.registry.model.reporting.HistoryEntry;
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import javax.inject.Inject;
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import org.joda.time.DateTime;
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/**
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* An EPP flow that creates a new host.
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*
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* <p>Hosts can be "external", or "internal" (also known as "in bailiwick"). Internal hosts are
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* those that are under a top level domain within this registry, and external hosts are all other
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* hosts. Internal hosts must have at least one ip address associated with them, whereas external
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* hosts cannot have any. This flow allows creating a host name, and if necessary enqueues tasks to
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* update DNS.
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*
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* @error {@link google.registry.flows.EppXmlTransformer.IpAddressVersionMismatchException}
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* @error {@link google.registry.flows.exceptions.ResourceAlreadyExistsException}
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* @error {@link HostFlowUtils.HostNameTooLongException}
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* @error {@link HostFlowUtils.HostNameTooShallowException}
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* @error {@link HostFlowUtils.InvalidHostNameException}
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* @error {@link HostFlowUtils.HostNameNotLowerCaseException}
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* @error {@link HostFlowUtils.HostNameNotNormalizedException}
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* @error {@link HostFlowUtils.HostNameNotPunyCodedException}
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* @error {@link HostFlowUtils.SuperordinateDomainDoesNotExistException}
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* @error {@link SubordinateHostMustHaveIpException}
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* @error {@link UnexpectedExternalHostIpException}
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*/
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public final class HostCreateFlow implements TransactionalFlow {
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@Inject ResourceCommand resourceCommand;
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@Inject ExtensionManager extensionManager;
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@Inject @ClientId String clientId;
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@Inject @TargetId String targetId;
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@Inject HistoryEntry.Builder historyBuilder;
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@Inject DnsQueue dnsQueue;
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@Inject EppResponse.Builder responseBuilder;
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@Inject @Config("contactAndHostRoidSuffix") String roidSuffix;
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@Inject HostCreateFlow() {}
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@Override
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public final EppResponse run() throws EppException {
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extensionManager.register(MetadataExtension.class);
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extensionManager.validate();
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validateClientIsLoggedIn(clientId);
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Create command = (Create) resourceCommand;
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DateTime now = ofy().getTransactionTime();
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verifyResourceDoesNotExist(HostResource.class, targetId, now);
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// The superordinate domain of the host object if creating an in-bailiwick host, or null if
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// creating an external host. This is looked up before we actually create the Host object so
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// we can detect error conditions earlier.
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Optional<DomainResource> superordinateDomain =
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lookupSuperordinateDomain(validateHostName(targetId), now);
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verifySuperordinateDomainOwnership(clientId, superordinateDomain.orNull());
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boolean willBeSubordinate = superordinateDomain.isPresent();
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boolean hasIpAddresses = !isNullOrEmpty(command.getInetAddresses());
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if (willBeSubordinate != hasIpAddresses) {
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// Subordinate hosts must have ip addresses and external hosts must not have them.
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throw willBeSubordinate
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? new SubordinateHostMustHaveIpException()
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: new UnexpectedExternalHostIpException();
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}
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HostResource newHost = new Builder()
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.setCreationClientId(clientId)
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.setPersistedCurrentSponsorClientId(clientId)
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.setFullyQualifiedHostName(targetId)
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.setInetAddresses(command.getInetAddresses())
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.setRepoId(createRepoId(ObjectifyService.allocateId(), roidSuffix))
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.setSuperordinateDomain(
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superordinateDomain.isPresent() ? Key.create(superordinateDomain.get()) : null)
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.build();
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historyBuilder
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.setType(HistoryEntry.Type.HOST_CREATE)
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.setModificationTime(now)
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.setParent(Key.create(newHost));
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ImmutableSet<ImmutableObject> entitiesToSave = ImmutableSet.of(
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newHost,
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historyBuilder.build(),
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ForeignKeyIndex.create(newHost, newHost.getDeletionTime()),
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EppResourceIndex.create(Key.create(newHost)));
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if (superordinateDomain.isPresent()) {
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entitiesToSave = union(
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entitiesToSave,
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superordinateDomain.get().asBuilder()
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.addSubordinateHost(command.getFullyQualifiedHostName())
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.build());
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// Only update DNS if this is a subordinate host. External hosts have no glue to write, so
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// they are only written as NS records from the referencing domain.
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dnsQueue.addHostRefreshTask(targetId);
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}
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ofy().save().entities(entitiesToSave);
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return responseBuilder.setResData(HostCreateData.create(targetId, now)).build();
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}
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/** Subordinate hosts must have an ip address. */
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static class SubordinateHostMustHaveIpException extends RequiredParameterMissingException {
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public SubordinateHostMustHaveIpException() {
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super("Subordinate hosts must have an ip address");
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}
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}
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/** External hosts must not have ip addresses. */
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static class UnexpectedExternalHostIpException extends ParameterValueRangeErrorException {
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public UnexpectedExternalHostIpException() {
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super("External hosts must not have ip addresses");
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}
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}
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}
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