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1V0-642 VMware Certified Associate 6 - Network Virtualization 6.2(R)

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1V0-642 exam Dumps Source : VMware Certified Associate 6 - Network Virtualization 6.2(R)

Test Code : 1V0-642
Test denomination : VMware Certified Associate 6 - Network Virtualization 6.2(R)
Vendor denomination : VMWare
: 55 real Questions

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VMWare VMware Certified Associate 6

VMware certification changed with liberate of vSphere 6 | killexams.com real Questions and Pass4sure dumps

With the unlock of vSphere 6, VMware has modified the requirements to glean licensed for this unlock. To achieve a VMware certified expert (VCP) title, you must purchase the vSphere 6 Foundations exam.

The exam, which can subsist purchasable on August 30, assessments the abilities of candidates in their skill to set up a vSphere environment. The VCP is a comparatively current basic technical certification that covers the entire essential vSphere knowledge, together with prerogative here:

  • installation and configuring vCenter Server and ESXi
  • Configuring vSphere networking
  • Configuring vSphere storage
  • Deploying and administering digital machines and vApps
  • organising and protecting availability and aid administration features
  • Performing primary troubleshooting
  • Monitoring vSphere implementation
  • Candidates who are looking to prepare for this exam can purchase the vSphere: install, Configure, manage (ICM) route. previously, simply the ICM direction turned into ample to head for the VCP examination. Following the Foundations examination, candidates can then purchase one out of four VCP6 assessments that drop into VMware's four certification tracks. For statistics middle virtualization, a candidate would purchase the VCP6-DCV examination. For cloud management automation, there's the VCP6-CMA examination. For network virtualization, there is the VCP6-NV examination. For computing device and mobility, there's the VCP6-DTM examination.

    with the aid of making exhaust of these alterations to the VCP track, VMware seems to subsist adding extra expense to the certification. The vSphere 6 Foundations exam is evidently located as a technical exam, whereas VMware licensed associate assessments that absorb been delivered within the epoch of vSphere 5 -- and tarry in the tier beneath the VCP -- are greater oriented in opposition t an typical edge of VMware items for earnings individuals and other capabilities that are not as technically oriented.

    The suggested classes for each of the 4 tracks of the VCP checks moreover indicate that it requires more drudgery to glean the VCP certificate. as an example, it is counseled that a candidate in search of the VCP-DCV title purchase the vSphere: Optimize and Scale training route.

    another change: the track to a VCP certificates requires just one route to subsist taken. This skill that adventure will moreover subsist developed up through self-analyze as well, if you want to upshot it extra low-budget for candidates who requisite this certificates.

    Responding to altering times

    The adjustments in the VCP certification offering carry out not seem to subsist too dazzling, due to the fact that how vSphere is never just fully for server virtualization -- and corporations are investing in the enterprise's different products. agencies with tremendous infrastructures are structure onto vSphere with other VMware choices reminiscent of vCloud Suite or VMware vSphere with Operations administration as well as utility-described storage with digital SAN -- and don't forget NSX for community virtualization. as the virtualized records headquarters receives increasingly complicated, there is a larger claim for professional authorities who are neatly-versed with greater of VMware's portfolio.

    as soon as the VCP certificate has been got, VMware presents greater superior certifications as smartly. in the past, there turned into the VMware certified advanced expert which is now the VMware licensed Implementation professional, which additionally exists for the information middle virtualization, cloud administration and automation, network virtualization, and computing device and mobility tracks. For these aiming for the maximum possible stage of certification for every of those tracks, there is the VMware certified Design skilled certification.


    VMware (2v0-621): VMware licensed skilled 6 – records middle Virtualization | killexams.com real Questions and Pass4sure dumps

    MeasureUp’s VMware certified skilled 6 – facts headquarters Virtualization (VCP6-DCV) drill spy at various helps users establish together for the VMware certified skilled 6 – statistics middle Virtualization (VCP6-DCV) exam. This exam checks candidates on their expertise and capabilities installation, deploying, configuring, scaling, and managing a VMware vSphere 6 environment. a success candidates may noiseless subsist in a position to administer vSphere 6 safety, networking, and storage. Candidates should noiseless even subsist able to control vSphere 6 supplies, operate troubleshooting, and backup and glean well a vSphere 6 atmosphere. additionally, candidates should subsist in a position to install a vSphere information middle, configure availability, and control virtual machines.

    To achieve the VMware licensed professional (VCP) certification, candidates should first flow the VMware certified associate 6 – facts core Virtualization (VCA6-DCV) exam, effectively finished a required VMware authorized path, and creep the VCP6-DCV exam.

    Certification: This exam counts as credit score toward the following certifications:VMware licensed knowledgeable (VCP)VMware certified superior skilled (VCAP)

    This test carries a hundred and fifty questions and covers the following objectives:

  • Configure and Administer vSphere 6x security – 15
  • Configure and Administer superior vSphere 6.x Networking – four
  • Configure and Administer advanced vSphere 6.x Storage – 13
  • improve a vSphere Deployment to six.x – 12
  • Administer and maneuver vSphere 6.x resources – 4
  • Backup and recuperate a vSphere Deployment – 8
  • Troubleshoot a vSphere Deployment – 15
  • deploy and Consolidate vSphere information core – three
  • Configure and Administer vSphere Availability options – 9
  • Administer and manage vSphere virtual Machines – 10

  • Zingbox IoT Guardian Achieves VMware ready popularity | killexams.com real Questions and Pass4sure dumps

    Zingbox, the issuer of the most widely deployed healthcare information superhighway of things (IoT) analytics platform, these days announced that its IoT Guardian has achieved VMware competent repute. This designation indicates that after a circumstantial validation mode IoT Guardian has completed VMware’s maximum plane of endorsement and is supported on VMware vSphere® 6.7 for creation environments.

    “we're joyful that Zingbox qualifies for the VMware equipped logo, signifying to customers that it has met specific VMware interoperability requisites and works effortlessly with VMware cloud infrastructure. This signifies to valued clientele that IoT Guardian can subsist deployed in creation environments with self assurance and might speed time to value inside consumer environments,” talked about Kristen Edwards, director, technology Alliance accomplice application, VMware.

    “through the exhaust of Zingbox IoT Guardian with VMware vSphere and VMware NSX facts middle organizations can gleam the improvement from a comprehensive information superhighway of things safety answer,” referred to Xu Zou, CEO and co-founding father of Zingbox. "Convergence of IT and OT remains a a qualified deal-essential initiative for businesses. In healthcare, the blend of Zingbox IoT Guardian, VMware vSphere and VMware NSX records headquarters produces a robust managed network conclusion-to-conclusion protection solution for scientific instruments. This current solution allows for healthcare IT companies to prerogative now find bar null gadgets connecting to their networks, classify the IoT gadget possibility ranges and immediately control entry privileges of those instruments on their networks.”

    This respond is advancing convergence, and enabling companies to expand operational efficiency and security by using the latest techniques, technologies and trade models. To gain lore of greater about this solution, tickle talk over with VMware booth #4049 at HIMSS19, Feb. 11 – 15 at the Orange County convention middle in Orlando, Fla.

    The VMware equipped software is a co-branding benefit of the know-how Alliance companion (tap) program, which makes it easy for consumers to establish accomplice items licensed to drudgery with VMware cloud infrastructure. customers can exhaust these products and options to reduce assignment hazards and understand can charge tag downs over customized-constructed solutions. With lots of contributors global, the VMware faucet software comprises most beneficial-of-breed expertise partners with the shared commitment to carry the most commandeer skills and trade solutions to maneuver each and every exciting consumer want.

    Zingbox IoT Guardian will moreover subsist discovered inside the on-line VMware solution change (VSX) at https://market.vmware.com/vsx/options/zingbox-iot-guardian-10-1. The VMware respond alternate is an online market the residence VMware partners and builders can submit wealthy advertising content material and downloadable software for their purchasers.

    About Zingbox

    Zingbox is the leading company ofthe most widely deployed information superhighway of things (IoT)analytics platform for machine management and safety. currently named a “Cool vendor in IoT safety” by passage of Gartner and recipient of the Gold Stevie Award for most resourceful enterprise, Zingbox helps groups recognise the entire abilities of their IoT contraptions, providing a brand current generic for uninterrupted service through device inventory, management, security and optimization for the whole IoT atmosphere. The company’s gadget-certain AI-powered machine getting to know platform makes exhaust of the first true-time abysmal behavioral researching technology for IoT contraptions. For greater assistance, tickle visit http://www.zingbox.com.

    About Zingbox IoT Guardian

    Zingbox’s flagship product IoT Guardian makes exhaust of desktop studying for asset discovery, risk evaluation, baselining the typical conduct of contraptions and discovery of threats. This intuitive, bright solution builds abysmal expertise of each and every individual equipment’s regular behavior, enabling the respond to immediately detect, determine and classify irregular behavior for connected devices.

    VMware, VMware vSphere 6.7, VMware NSX and VMware competent are registered logos or trademarks of VMware, Inc. in the u.s. and different jurisdictions. bar null different marks and names outlined herein may well subsist trademarks of their respective businesses.

    View source version on businesswire.com: https://www.businesswire.com/news/domestic/20190208005385/en/

    source: Zingbox"> <Property FormalName="PrimaryTwitterHandle" cost="@ZingboxSecurity

    Laura Ruarklaura@bospar.com

    Copyright enterprise Wire 2019


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    VMware Certified Associate 6 - Network Virtualization 6.2(R)

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    VMware NSX | killexams.com real questions and Pass4sure dumps

    VMware NSX is a virtual networking and security software product family created from VMware's vCloud Networking and Security (vCNS) and Nicira's Network Virtualization Platform (NVP) intellectual property.

    NSX software-defined networking (SDN) is allotment of VMware's software-defined data headquarters (SDDC) concept, which offers cloud computing on VMware virtualization technologies. VMware's stated goal with NSX is to provision virtual networking environments without a command-line interface (CLI) or other direct administrator intervention. Network virtualization abstracts network operations from the underlying hardware onto a distributed virtualization layer, much like server virtualization does for processing power and operating systems (OSes). VMware vCNS virtualizes Layer 4-7 (L4-L7) of the network. Nicira's NVP virtualizes the network fabric, Layer 2 (L2) and Layer 3 (L3).

    NSX exposes ratiocinative firewalls, switches, routers, ports and other networking elements to enable virtual networking among vendor-agnostic hypervisors, cloud management systems and associated network hardware. It moreover supports external networking and security ecosystem services.

    Important features of NSX
  • Switching: NSX ratiocinative switches exhaust unique Virtual Extensible LAN (VXLAN) network identifiers to create a ratiocinative overlay extension for the L2 network, to which applications and tenant virtual machines (VMs) can then subsist logically wired. These ratiocinative broadcast domains enable greater flexibility and faster deployment, bar null while providing the characteristics of a virtual LAN (VLAN) without the risk of sprawl.
  • Routing: NSX performs routing with both ratiocinative distributed routers, which create routes between virtual networks at the hypervisor kernel and physical routers for scale-out routing with active-active failover.
  • Distributed firewalling: The NSX distributed firewall is a hypervisor kernel-embedded firewall that spreads out over the ESXi host. A network administrator can create custom firewall policies, which are enforced at the virtual network interface card (vNIC) level, to invoke stateful firewall services for VMs and expand visibility and control for virtualized networks and workloads.
  • Load balancing: NSX offers a L4-L7 load balancer that intercepts, translates and manipulates network traffic to ameliorate enterprise application availability and scalability. The NSX load balancer includes support for Secure Sockets Layer (SSL) offload for pass-through and server health checks. The L4 load balancer offers packet-based load balancing, which sends the packet to a specific server after it's manipulated; the L7 load balancer offers socket-based load balancing, which establishes client- and server-facing connections for a lone request.
  • Virtual private network (VPN): NSX includes site-to-site and remote access VPN capabilities and unmanaged VPN for cloud gateway services.
  • NSX Edge gateway: The NSX Edge gateway is a VM that behaves fancy an appliance to accomplish L3 routing, firewalling, site-to-site virtual private networking, load balancing and more. This feature moreover offers support for VXLAN to VLAN bridging for seamless connection to physical workloads.
  • Application programming interface (API): NSX uses a representational condition transfer (REST)-based API to simplify third-party product and service integration and to integrate NSX with cloud management for additional automation capabilities.
  • Operations: native operations capabilities comprise central CLI, Switch Port Analyzer (SPAN), IP flow Information Export (IPFIX), Application Rule Manager (ARM), Endpoint Monitoring and integration with VMware vRealize Suite for proactive monitoring, analytics and troubleshooting.
  • Dynamic security policy: NSX Service Composer enables the network administrator to provision and allocate network and security services to applications. The administrator can moreover exhaust Service Composer to create dynamic security groups with custom filters, such as VMware vCenter objects and tags, OS nature and vigorous Directory (AD) roles.
  • Cloud management: NSX natively integrates with vRealize Automation and OpenStack for cloud management.
  • Cross-vCenter Networking and Security (Cross-VC NSX): This capability scales NSX vSphere across vCenter and data headquarters boundaries. This enables the network administrator to address capacity pooling across vCenters, simplify data headquarters migration, accomplish long-distance vMotions and accomplish disaster recovery (DR).
  • Log management: NSX integrates with vRealize Log Insight, which receives log entries from ESXi hosts, uses content packs to process the information each log entry contains and identifies issues within the NSX deployment.
  • NSX exhaust cases

    According to VMware, the top three exhaust cases driving NSX adoption are microsegmentation, IT automation and DR. These exhaust cases direct to resolve issues commonly associated with network virtualization, such as impoverished traffic performance and insufficient security.

    The first of these exhaust cases, microsegmentation, addresses network security. Microsegmentation takes the common networking drill of segmentation and applies it at a granular level. This enables the network administrator to establish a zero-trust security perimeter around a specific set of resources -- typically workloads or network segments -- and add east-west firewall functionality to the data center. NSX moreover enables the administrator to create additional security policies for specific workloads, regardless of where they sit in the network topology.

    NSX uses data headquarters automation for quickly and resilient network provisioning. The network administrator can rapidly provision a current network or network segment with workloads, resources and security policies already attached to it. This eliminates bottlenecks and makes NSX exemplar for application testing and working with erratic workloads, which NSX can support logically isolated on the very physical network.

    Automation is moreover essential to DR. NSX integrates with orchestration tools, such as vSphere Site Recovery Manager (SRM), which automates failover and DR. When paired with NSX, SRM can subsist used for storage replication and to manage and test recovery plans. SRM moreover integrates with Cross-VC NSX. Introduced in NSX 6.2, Cross-VC NSX enables ratiocinative networking and security across multiple vCenters, which makes it easier to invoke consistent security policies without the requisite for manual intervention. When used in conjunction with Cross-VC NSX, SRM automatically maps universal networks across protected and recovery sites.

    NSX licensing and versions

    In May 2016, VMware updated its NSX licensing scheme, introducing two current licenses -- benchmark and Advanced -- to complement the complete Enterprise product license.

    According to VMware, the NSX benchmark license is intended for organizations that require network agility and automation and includes features such as distributed switching, distributed routing and integration with the vRealize Suite and OpenStack. The mid-range license, NSX Advanced, offers the very capabilities as the benchmark license, as well as microsegmentation for a more secure data headquarters and features such as NSX Edge load balancing and distributed firewalling. The highest-tier license, NSX Enterprise, includes the very capabilities as the Advanced license, as well as networking and security across multiple domains through features such as Cross-VC NSX.

    VMware updated the NSX licensing scheme once again in May 2017 -- this time, introducing an edition of NSX for Remote and arm Offices (ROBO).

    VMware NSX editions comparison

    In addition to these NSX licenses, VMware customers absorb the option of purchasing NSX-T and NSX Cloud. Released in February 2017, NSX-T offers networking and security management for non-vSphere application frameworks, multiple Kernel-based Virtual Machine (KVM) distributions and OpenStack environments. NSX-T moreover supports Photon Platform, VMware's cloud-native infrastructure software for containers. NSX Cloud takes NSX-T components and integrates them with the public cloud. NSX Cloud customers absorb access to a multi-tenant dashboard, which is integrated with VMware Cloud Services, and can develop and test applications with the very network and security profiles used in the production environment.

    Certification and training

    VMware offers five certifications for NSX at varying levels. VMware's entry-level NSX certification, VMware Certified Professional 6 - Network Virtualization (VCP6-NV), demonstrates the candidate's skill to install, configure and administer NSX virtual networking implementations.

    VMware's mid-level NSX certification, VMware Certified Advanced Professional 6 - Network Virtualization (VCAP6-NV), demonstrates the candidate's skill to deploy an NSX-based data headquarters networking infrastructure.

    At present, there is only one option for VCAP6-NV certification -- VCAP6-NV Deploy -- but VMware has plans to add a Design track as well. Any candidate who earns VCAP6-NV Design certification is eligible for VMware Certified Implementation Expert 6 - Network Virtualization (VCIX6-NV) certification. Once VMware releases the VCAP6-NV Design certification, candidates who achieve both VCAP6-NV Deploy and Design certifications will automatically deserve VCIX6-NV status.

    The highest plane of NSX certification, VMware Certified Design Expert 6 - Network Virtualization (VCDX6-NV), demonstrates the candidate's familiarity with vSphere and NSX and the skill to design an NSX-based data headquarters networking infrastructure.

    VMware provides a number of resources for NSX certification training, including instructor-led courses, self-paced courses, cloud-based lab environments and learning subscriptions. NSX certification candidates are moreover encouraged to review the official exam blueprint, purchase an online drill exam and find or unite a study group.


    VMware vSphere Deployment and Management | killexams.com real questions and Pass4sure dumps

    In this chapter, Edward Haletky discusses how many VMware management components communicate between themselves and the virtualization hosts, as well as some of the pitfalls inherent within this communication.

    This chapter is from the book 

    Many people carry out not deem the deployment and management of virtual machines to subsist much of a security issue, but it is. Because most, if not all, VM deployment is done over the administrative network on which the VMware ESX Service Console, VMware ESXi Management Appliance, and vCenter Management Server (VC) hosts, it is an considerable aspect to discuss in the context of virtualization security. There are several threats to the VMware vSphere™ and Virtual Infrastructure that can target the specific management tools, whether they are vCenter Management Server, the Virtual Infrastructure Client (VIC), Lab Manager, or even webAccess. Some vulnerabilities are easier to exploit than others, but they carry out exist. In addition to the straightforward vulnerabilities, issues exist with authentication, roles and permissions, and access restrictions.

    In addition to the accustomed tools that ship with the VMware ESX, ESXi, and Server hypervisors, they will arm their discussion to comprise the VMware Stage, Lab, and Life Cycle Managers. At this time they are not pulling into their discussion the VMware Virtual Desktop Manager (VDM) but they will discuss this in Chapter 10, "Virtual Desktop Security."

    One of the first things to understand is how data flows among bar null the management tools within the virtual environment. In some cases, there are settings that will change how data flows, and will discuss those as well.

    Of chief interest when discussing security and management is how the management data flows around the virtual and physical network. Several management clients and tools are in exhaust when they attempt to manage the virtual infrastructure, and they bar null absorb their own management methodologies and constraints. They will discuss bar null the primary VMware management products except the Virtual Desktop Manager and VMware View Manager within this chapter. Chapter 10 discusses the ins and outs of VDI including VDM and VMware View Manager.

    All traffic from management clients to either virtualization hosts or VC and back is encrypted using the secure socket layer (SSL) with the exception of the initial handshake done to establish SSL connectivity. SSL allows for end-to-end encryption as defined in Chapter 2, "Holistic View from the Bottom Up." Also, as defined in Chapter 2, SSL is susceptible to a MiTM certificate injection attack. They discuss this further within this chapter.

    Most of the mechanisms discussed in the following sections exhaust SSL over port 443, and you may sensation how it can support everything straight. How does the system know to transmit data to the SDK versus webAccess versus VIC access? VMware solved this problem with extensive exhaust of invert proxies based on the entry point into the VC, VMware ESX, VMware ESXi, or VMware Server hosts. invert proxies cache the destination port from the client, which moreover decreases the overall storm surface of exposed ports. Everything appears to tunnel through port 443. However, this does create a train of daemons within VC, VMware ESX, and VMware ESXi that could subsist listening on external ports yet carry out not requisite to carry out so.

    When VMware ESX, ESXi and VC are installed, they create a set of self-signed certificates to enable SSL to subsist used. These self-signed certificates are based on a root certificate not within any accustomed browser, so they will generally trigger requests for approvals when they are used. The exception is when ESX speaks to VC; that is approved automatically.

    VIC to VC (Including Plug-Ins)

    The most commonly used management utensil is the Virtual Infrastructure Client (VIC), which can either connect directly to a VMware ESX or ESXi host, or to the VMware VirtualCenter (VC) server. This key management utensil behaves differently when connected to VC than the host. When connected to VC, data flows from the VIC to VC and then stops or heads on to the host. Initially the VIC will talk on port 80, switch to port 443 for initial SSL setup, and then subsist switched to port 902 for bar null further communication.

    Most traffic goes from VIC to VC, then either stops at VC or is sent on to the virtualization host. Those items that are global in nature carry out not always travel on to the host. For example Datacenter, Cluster, Alarms, Tasks, and Permissions carry out not travel on to the host. Yet, subsets of clusters, specifically VMware HA configurations, carry out travel on to the host. Communication between VC and the host uses SSL over port 902.

    Of particular interest is the case of using the remote console, because this path goes to VC to retrieve the host on which the VM resides and then goes directly to the host using SSL over port 902. Because the denomination of the VMware ESX or ESXi host comes from VC, denomination resolution related errors often occur when using the remote console from a workstation that does not absorb the DNS entries for the VMware ESX or ESXi host.

    The VIC to VC data flow can subsist summarized as follows:

  • VIC to VC for Overview pages (these carry out not exhaust SSL).
  • VIC to VC for Datacenter, Cluster, Alarms, Tasks, and Permissions settings using SSL
  • Remote Console to Host setup using SSL
  • VIC to VC to Host for bar null other actions using SSL
  • Figure 6.1 presents the data flow in a visual fashion.

    The easiest passage to glean a maneuver on what goes where is to spy at the list of permissions within the VIC when connected to VC. Why the permissions list? Because it is a very qualified breakdown of the functionality allowed for the VIC as figure 6.2 depicts. Multiple VMware vCenters are shown within the diagram; these are bar null the very vCenter server. This format makes the diagram easier to understand because you can easily Tell which data would subsist forwarded on to the virtualization hosts and the VMware Update Manager, as well as what would tarry within the vCenter server.

    The data flow is moreover affected by the role in use. The read-only role, for example, will not parade data that is not already within the VC database. This seems counterintuitive because read-only access can moreover survey real-time performance graphs. This is because VC is gathering the data in the background and storing this data within its own database. This happens regardless of the role currently logged in.

    On the host, one considerable daemon is involved in bar null this processing, which initially listens on port 443 and then switches to port 902. Specifically, most traffic talks to the vmware-hostd daemon which is the vmware-authd service. Host Health Status information is gathered by VC via the cimserver or Pegasus using SSL port 902. The 5588 and 5589 ports are moreover open on the virtualization host for health status but are not used by VC or the VIC directly, yet these ports can subsist used by other tools.

    The current VIC does not accept two-factor authentication directly; it relies entirely on the authentication of the workstation from which the VIC is running. There is a passage to exhaust this existing authentication as credentials for the VIC to VC connection and not require another challenge response platform, and that is to exhaust the -passthroughAuth option for the VIC to provide a form of single-sign-on to VC.

    VIC plug-ins either communicate with VC, travel direct to a host, or travel to other resources using as many communication paths as there are plug-ins. VC plug-ins crook bar null the rules about which ports to open and how communication happens over them. The plug-in generally runs within the context of the current credentials within VC and directly on the host. In other words, plug-ins carry out not necessarily require further authentication. They discuss plug-in issues later within this chapter.

    VMware webAccess moreover does not support two-factor authentication but relies on the workstation from which the system was hasten to maneuver this aspect of authentication. VMware webAccess does not absorb a pass-through authentication mode, yet many single-sign-on tools are available, such as HP's ProtectTools Security Manager, which ships with most HP laptops today.

    VIC to Host

    The VIC to host data flow is a direct connection to the host over port 80, which is reversed proxy to port 443, which in gyrate talks SSL and eventually uses port 902 talking SSL for bar null future communication between the VIC and host. This is similar to how VC connects to the host in the VIC to VC discussion. There is no requisite to discuss this one in as much detail as they did in the previous discussion because everything talks to the host as shown in figure 6.3.

    If VC is employed, and changes are made directly on the host, VC will requisite to query the host for updates to its databases. However, this generally happens in the background. In some rare cases, or in cases where you requisite the information immediately within a VIC to VC connection, a VIC to VC connection can subsist forced to refresh its data through a manual refresh link that is on nearly every screen of the VIC. It should subsist notable that the roles and permissions used for VIC to VC are ignored, and the host specific roles and permissions are now used.

    Like the VIC to VC discussion, VIC to Host connectivity moreover does not absorb the capability of two-factor authentication. However, the very option discussed previously can provide a single-sign-on capability as long as the host is moreover participating in a directory service that the workstation is using. They discuss setting up directory services later in this chapter. This implies that single-sign-on will not drudgery for VMware ESXi, because it is not possible to configure a directory service on this nature of host. However, there is hope for VMware ESXi administrators with the Hy-Trust security appliance, which sits between your VMware ESX or ESXi hosts to apply additional granular credentials to bar null access whether from the VIC, VC, or other management tools.

    VC webAccess

    VC webAccess, shown in figure 6.4, occurs over port 80 and then uses a invert proxy to connect to port 8009, which speaks SSL. webAccess does not award the very capabilities as the VIC with VC version 2.5.x, yet does provide a mode to review and control individual VMs. Similar to the VIC to VC, further communication may occur from VC to the host to amass information about VMs over port 902. However, any remote console connection is direct to the host over port 902. webAccess is matter to the roles and permissions set up within VC.

    With VC webAccess there exists no support for two-factor authentication, yet single-sign-on is possible using Web browser add-ons or hardware devices within your workstation.

    ESX(i) webAccess

    ESX(i) webAccess works identically to VC webAccess except that there is a direct connection to the host to glean information about each VM. figure 6.5 depicts this data flow, which is matter to bar null the roles and permissions configured on the ESX(i) host and are unrelated to those configured on VC. ESX(i) webAccess occurs over port 80 and then switches to port 443, where it stays and speaks SSL.

    With VMware ESX and ESXi webAccess, no support exists for two-factor authentication, yet single-sign-on is possible using Web browser add-ons or hardware devices within your workstation. One example of such a device is the previously mentioned HP ProtectTools Security Manager.

    VI SDK to VC

    Similar to the VIC to VC discussion is the VI SDK to VC data flow in that some aspects of the VI SDK will desist at the VC server and others will travel directly onto the ESX server using the accustomed VC to ESX data flow. However, the initial connection using the VI SDK to the VC server is done using the mode of VC webAccess except that the target URL is https://virtualcenterserver/sdk instead of just http://virtualcenterserver. Specifically, the SDK will attach to port 443, which talks over SSL and then invert proxy to port 8086.

    The SDK is extremely intricate and supports many bindings to its Simple protest Access Protocol (SOAP) interfaces. The Web Service Definition Language (WSDL) interfaces are the key components of the VI SDK. Everything that can subsist done within the VIC can subsist duplicated using the VI SDK. figure 6.6 depicts this data flow, which is matter to bar null the roles and permissions that VIC to VC must obey.

    However, no mechanism exists to duplicate the remote console within the VI SDK. Yet you can create your remote console links that travel directly to the host using the following PERL VI Toolkit code. You can create multiple types of links, as well. In the following code, $rcview has a value of 33, which tells MKS to parade the virtual machine's console as well as details such as event logs. A value of 9 tells MKS to parade the virtual machine's console as well as the inventory panel. A value of 36 tells MKS to parade the virtual machine's console only. A value of 12 tells MKS to add an inventory panel to the parade of just the console.1

    # Create MKS link partial code my $rcview = 33; my $vm_view = Vim::find_entity_views( view_type => 'VirtualMachine' ); for my $vm (@$vm_view) { my $name = $vm->name; my $moref= $vm->{'mo_ref'}->value; my $url = qq{wsUrl=http://localhost/sdk&vmId=VirtualMachine|${moref}&ui=${rcview}} ; my $rcurl = "https://${virtual_center}/ui/vmDirect.do?view=" . encode_base64($url, q{}) . "_"; print "$name $rcurl\n"; }

    The developer of a VI SDK application should comprise the capability to exhaust two-factor authentication or single-sign-on because the VI SDK does not provide this feature. Furthermore, the VI SDK does not currently verify the veracity of the SSL certificates in use, other than the typical self-signed check that occurs. Further verification of server certificates is required.

    VI SDK to Host

    Similar to the VI SDK to VC discussion, the VI SDK to host bypasses VC completely and can accomplish bar null the actions that the VIC connected to the host can perform. figure 6.7 depicts this data flow, which is matter to the roles and permissions set on the host and not those set on VC.

    RCLI to Host

    RCLI to Host is a combination of VI SDK to Host and VIC to Host activity defined previously. Some actions exhaust the VI SDK explicitly, whereas others talk over port 902 to complete their tasks, as does the VIC. The RCLI, fancy the VI SDK, does not absorb the capability to support two-factor authentication or single-sign-on within its functionality.

    RCLI to VC

    Similar to RCLI to Host, RCLI to VC makes exhaust of the VI SDK as well as the VIC to VC communication channels. VC to Host communication happens over port 902.

    SSH to Host

    SSH to Host is specifically for VMware ESX and not generally for VMware ESXi. By default, VMware ESX denies direct root access using SSH, which a very qualified setting to support because it maintains the defense in depth available to the GNU/Linux service console environment. To enable SSH on VMware ESXi, you must first wreck the only security shield VMware ESXi really has, because there is no defense-in-depth capability within VMware ESXi. SSH talks over port 22 by default, but that can subsist changed as necessary.

    SSH has the capability to create preshared keys for communication to enable single-sign-on. In addition, it is possible to implement two-factor authentication using SSH.

    Console Access

    Console access can subsist granted while at the keyboard in front of the host or via a remote access card such as the HP Integrated Lights Out (ILO) or Dell Remote Access Card (DRAC) adapters. These provide network access directly to the console as if you were physically at the console. The tools generally talk over port 80 and switch to port 443 for SSL communication via a Web browser. Because a web browser is in use, single-sign-on is supported as described in the VC webAccess section. In addition, most remote access devices moreover support their own two-factor authentication.

    For VMware ESX console, but not for VMware ESXi, it is possible to enable two-factor authentication using PAM modules provided by the vendors of these products fancy RSA.

    Lab Manager

    Lab Manager presents to the user its own interface, yet behind the scenes it communicates with VC using the VI SDK to VC path. Lab Manager can absorb its own authentication methods outside the ones normally used for VC or even ESX.

    Site Manager

    Site Manager, fancy Lab Manager, presents to the user its own interface, yet behind the scenes it communicates with VC using the VI SDK to VC path. Site Manager can absorb its own authentication methods outside the ones normally used for VC or even ESX.

    LifeCycle Manager

    LifeCycle Manager, fancy Lab Manager, presents to the user its own interface, yet behind the scenes it communicates with VC using the VI SDK to VC path. LifeCycle Manager can absorb its own authentication methods outside the ones normally used for VC or even ESX. VC to ESX communication happens over port 902.

    AppSpeed

    AppSpeed, fancy Lab Manager, presents to the user its own interface, yet behind the scenes it communicates with VC using the VI SDK to VC path. AppSpeed can absorb its own authentication methods outside the ones normally used for VC or even ESX.

    CapacityIQ

    CapacityIQ, fancy Lab Manager, presents to the user its own interface, yet behind the scenes it communicates with VC using the VI SDK to VC path. CapacityIQ can absorb its own authentication methods outside the ones normally used for VC or even ESX.

    VMware Update Manager

    VMware Update Manager (VUM) runs as a service to communicate to the VMware Patch repository on the vmware.com Web site. The update manager will download the patches and provide a local repository to exhaust when patching your VMware ESX and ESXi hosts. VMware Update Manager uses the esxupdate function on each ESX server to connect to port 80, which then invert proxies to the update manager server on port 8084. On the update manager host, esxupdate pulls down each patch in the necessary order and updates the host, rebooting as necessary. It is moreover possible to exhaust an Internet facing host to download the VMware Update patches so that your VUM host does not requisite direct access to the Internet.


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