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148 lines
5.8 KiB
Java
148 lines
5.8 KiB
Java
// Licensed to the Apache Software Foundation (ASF) under one
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// or more contributor license agreements. See the NOTICE file
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// distributed with this work for additional information
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// regarding copyright ownership. The ASF licenses this file
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// to you under the Apache License, Version 2.0 (the
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// "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,
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// software distributed under the License is distributed on an
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// "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
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// KIND, either express or implied. See the License for the
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// specific language governing permissions and limitations
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// under the License.
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package com.cloud.hypervisor;
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import java.util.List;
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import java.util.Map;
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import javax.inject.Inject;
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import com.cloud.agent.api.Command;
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import com.cloud.agent.api.to.DiskTO;
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import com.cloud.agent.api.to.NicTO;
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import com.cloud.agent.api.to.VirtualMachineTO;
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import com.cloud.offering.ServiceOffering;
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import com.cloud.server.ConfigurationServer;
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import com.cloud.storage.dao.VMTemplateDetailsDao;
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import com.cloud.utils.Pair;
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import com.cloud.utils.component.AdapterBase;
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import com.cloud.vm.NicProfile;
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import com.cloud.vm.NicVO;
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import com.cloud.vm.UserVmManager;
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import com.cloud.vm.VMInstanceVO;
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import com.cloud.vm.VirtualMachine;
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import com.cloud.vm.VirtualMachineProfile;
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import com.cloud.vm.dao.NicDao;
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import com.cloud.vm.dao.NicSecondaryIpDao;
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import com.cloud.vm.dao.VMInstanceDao;
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import com.cloud.vm.dao.UserVmDetailsDao;
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public abstract class HypervisorGuruBase extends AdapterBase implements HypervisorGuru {
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@Inject VMTemplateDetailsDao _templateDetailsDao;
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@Inject NicDao _nicDao;
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@Inject VMInstanceDao _virtualMachineDao;
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@Inject UserVmDetailsDao _userVmDetailsDao;
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@Inject NicSecondaryIpDao _nicSecIpDao;
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@Inject ConfigurationServer _configServer;
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protected HypervisorGuruBase() {
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super();
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}
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@Override
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public NicTO toNicTO(NicProfile profile) {
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NicTO to = new NicTO();
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to.setDeviceId(profile.getDeviceId());
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to.setBroadcastType(profile.getBroadcastType());
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to.setType(profile.getTrafficType());
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to.setIp(profile.getIp4Address());
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to.setNetmask(profile.getNetmask());
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to.setMac(profile.getMacAddress());
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to.setDns1(profile.getDns1());
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to.setDns2(profile.getDns2());
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to.setGateway(profile.getGateway());
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to.setDefaultNic(profile.isDefaultNic());
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to.setBroadcastUri(profile.getBroadCastUri());
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to.setIsolationuri(profile.getIsolationUri());
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to.setNetworkRateMbps(profile.getNetworkRate());
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to.setName(profile.getName());
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to.setSecurityGroupEnabled(profile.isSecurityGroupEnabled());
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// Workaround to make sure the TO has the UUID we need for Niciri integration
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NicVO nicVO = _nicDao.findById(profile.getId());
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to.setUuid(nicVO.getUuid());
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//check whether the this nic has secondary ip addresses set
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//set nic secondary ip address in NicTO which are used for security group
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// configuration. Use full when vm stop/start
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List <String> secIps = null;
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if (nicVO.getSecondaryIp()) {
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secIps = _nicSecIpDao.getSecondaryIpAddressesForNic(nicVO.getId());
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}
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to.setNicSecIps(secIps);
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return to;
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}
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protected VirtualMachineTO toVirtualMachineTO(VirtualMachineProfile vmProfile) {
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ServiceOffering offering = vmProfile.getServiceOffering();
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VirtualMachine vm = vmProfile.getVirtualMachine();
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Long minMemory = (long) (offering.getRamSize() / vmProfile.getMemoryOvercommitRatio());
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int minspeed = (int) (offering.getSpeed() / vmProfile.getCpuOvercommitRatio());
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int maxspeed = (offering.getSpeed());
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VirtualMachineTO to = new VirtualMachineTO(vm.getId(), vm.getInstanceName(), vm.getType(), offering.getCpu(), minspeed, maxspeed,
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minMemory * 1024l * 1024l, offering.getRamSize() * 1024l * 1024l, null, null, vm.isHaEnabled(), vm.limitCpuUse(), vm.getVncPassword());
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to.setBootArgs(vmProfile.getBootArgs());
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List<NicProfile> nicProfiles = vmProfile.getNics();
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NicTO[] nics = new NicTO[nicProfiles.size()];
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int i = 0;
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for (NicProfile nicProfile : nicProfiles) {
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nics[i++] = toNicTO(nicProfile);
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}
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to.setNics(nics);
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to.setDisks(vmProfile.getDisks().toArray(new DiskTO[vmProfile.getDisks().size()]));
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if(vmProfile.getTemplate().getBits() == 32) {
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to.setArch("i686");
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} else {
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to.setArch("x86_64");
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}
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Map<String, String> detailsInVm = _userVmDetailsDao.listDetailsKeyPairs(vm.getId());
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if(detailsInVm != null) {
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to.setDetails(detailsInVm);
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}
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// Workaround to make sure the TO has the UUID we need for Niciri integration
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VMInstanceVO vmInstance = _virtualMachineDao.findById(to.getId());
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// check if XStools/VMWare tools are present in the VM and dynamic scaling feature is enabled (per zone/global)
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Boolean isDynamicallyScalable = vmInstance.isDynamicallyScalable() && UserVmManager.EnableDynamicallyScaleVm.valueIn(vm.getDataCenterId());
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to.setEnableDynamicallyScaleVm(isDynamicallyScalable);
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to.setUuid(vmInstance.getUuid());
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//
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return to;
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}
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@Override
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public Pair<Boolean, Long> getCommandHostDelegation(long hostId, Command cmd) {
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return new Pair<Boolean, Long>(Boolean.FALSE, new Long(hostId));
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}
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@Override
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public List<Command> finalizeExpunge(VirtualMachine vm) {
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return null;
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}
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@Override
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public List<Command> finalizeExpungeNics(VirtualMachine vm, List<NicProfile> nics) {
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return null;
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}
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}
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