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What-is-VMware-NSX-T-Manager-Unified-Appliance-and-Installation Recently, I have been doing a lot of NSX labbing in the home lab environment, between NSX-V and starting to lab with NSX-T as well. NSX-T certainly seems to be the direction that VMware will be heading with the NSX product roadmap and certainly could be a merge of the two in the future. However, for now, they are separate products. NSX-T is a multi-hypervisor product that does not require vCenter Server, unlike NSX-V. NSX-V is the VMware only variant of the product. There are definitely similarities between the two, but also differences. In this post, we will take a look at the first core component of the VMware NSX-T installation – the NSX-T Manager. Let’s look at what is VMware NSX-T Manager Unified Appliance and installation to discuss the unified appliance, its purpose, and also installing the NSX-T Manager appliance.Unlike downloading NSX-V, when you go to download NSX-T from VMware, you will see the NSX-T Data Center Unified Appliance available for download. What is this exactly? The NSX-T Data Center Unified Appliance is an appliance included in the installation of NSX-T. It includes the ability to deploy the appliance in the roles of NSX Manager, Policy Manager, or Cloud Service Manager. At this time, it only supports one role at a time. Installing VMware NSX-T Manager applianceThe NSX-T Manager is the first role that you stand up with the NSX-T environment. It provides the graphical user interface and access to REST APIs. This allows creating, configuring, and monitoring NSX-T Data Center. The NSX-T Manager is used to create such components as logical switches and routers as well as firewalls. A couple of things to note about the NSX-T Manager:It provides the management plane of the NSX-T solutionYou can only have one instance of NSX-T manager running. If in

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Zone is deployed on the NSX-T Manager Appliance, a compute manager such as vCenter must be added to NSX-T, and hosts inside the compute manager should be configured with NSX-T. During this configuration of hosts with NSX-T, we add the VLAN Transport Zone onto the host and configure a vSphere Distributed Switch (VDS) to utilize for distributed networking. NSX-T allows you to utilize an existing VDS switch on the host or deploy a new NSX-T controlled Virtual Distributed Switch (N-VDS) on the host. Both of these options can be utilized for VMware SDN VMM domains. Please note that VMware is planning to phase out the support for NSX-T-managed vSphere Distributed Switch (N-VDS) on ESXi hosts sometime in later 2022. N-VDS will still be supported and functional on NSX-T Edge Nodes. You can find more details about N-VDS host switch support deprecation here. The network administrator can now utilize Cisco ACI to provision networking for the NSX-T virtualized workloads using the same application-centric constructs they are familiar with; they can use Cisco ACI contracts to connect and secure the virtualized workloads among one another or with any physical device in the data center. Figure 8, below, shows a topology view of web, application, and database workloads interconnected and secured through ACI constructs. Web and application workloads run in the NSX-T domain connected to Cisco ACI through the VMware SDN VMM domains. The database workload is a bare-metal server connected to ACI through a physical domain. Figure 8. Application Profile topology showing NSX-T workloads and bare-metal database connected and secured by ACI constructs In addition, once the VMM domain is created, the fabric administrator can see a complete inventory of the hosts in the NSX-T domain (hosts which are added into the VLAN Transport Zone), including hypervisors and virtual machines. It is important to note that using a VMM domain enables consolidated network provisioning and operations across physical and virtual domains while using standard virtual switches from the hypervisor vendors. For instance, in the case of Microsoft Hyper-V, APIC provisions logical networks on the native Hyper-V virtual switch, using the open protocol OpFlex to interact with it. Similarly, in OpenStack environments, Cisco ACI works with Open vSwitch using OpFlex and Neutron ML2 or the Group-Based Policy plug-in within OpenStack.[2] Specifically in the context of this white paper, which focuses on VMware NSX-T environments, the APIC provisions a VLAN Transport Zone for every VMware SDN VMM domain created, which uses a VLAN encapsulation as attach endpoints to the fabric. VMware NSX-T fundamentals NSX-T for Data Center NSX-T for Data Center is an evolution of VMware NSX-V. At the heart of the system is the NSX-T Manager Appliance, which is similar to the former NSX-V Manager and is instrumental in managing all other components, from installation to provisioning and upgrading. NSX-T for Data Center has the following components: ● NSX-T Manager Appliance: Available in a virtual machine form factor, NSX-T Manager Appliance has two major components: a Management Plane (MP) and a Central Control. Honda Nsx Wallpapers Hd Wallpaper. Honda Nsx 2025 Wallpaper. Honda Nsx Wallpapers. Nissan Nsx. Honda Nsx Jdm. Honda Nsx 2025. Honda Nsx Type R. 90s Japanese Cars. Honda Sports Car. 92’ NSX. Honda NSX AccuraNSX 2025 Source : Insta @misovisual. carinaction. More about this Pin. 92. Saves. 6. Likes.

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Review the known upgrade problems and workaround documented in the NSX release notes.See the NSX Release Notes. Follow the system configuration requirements and prepare your infrastructure. See the system requirements section of the NSX Installation Guide. Evaluate the operational impact of the upgrade. Upgrade your supported hypervisor. If you have an earlier version of NSX Intelligence installed, upgrade NSX Intelligence first. Complete the Pre-Upgrade Tasks.Verify that the NSX environment is in a healthy state. Download the latest NSX upgrade bundle. If you are using NSX Cloud for your public cloud workload VMs, remove all NSX Cloud components before proceeding with the upgrade. NSX Manager upgrade is not allowed when NSX Cloud components are present. Undeploy NSX Cloud configurations as described in the topic Un-deploy NSX Cloud available in the NSX Installation Guide. Upgrading NSX Cloud components to 4.2 and later is not available. Upgrade your upgrade coordinator. Upgrade the NSX Edge cluster. Upgrade the hosts. Upgrade the Management plane. Post-upgrade tasks. Troubleshoot upgrade errors.

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The case where customers also use NSX-T overlay capabilities. NSX-T GENEVE architecture This section describes various alternatives for running NSX-T GENEVE overlay capabilities on a Cisco ACI fabric. Figure 25 shows a general representation of the reference architecture for NSX-T as outlined in the NSX-T for Data Center Design Guide. In the NSX-T reference architecture, VMware recommends dedicating compute resources for user applications and for running NSX-T Edge Nodes, all connected through a leaf-and-spine fabric to maximize bisectional bandwidth. In the figure, servers that cannot be part of the NSX-T overlay are shown in blue, including bare-metal servers, other hypervisors, container platforms, and vSphere clusters without NSX-T installed. Figure 25. Compute clusters, management cluster, and edge cluster for a multiple vCenter solution In the NSX-T architecture, the NSX-T Manager Appliance is the heart of the system. The NSX-T Manger Appliance has Management Plane, Control Plane, and policy integrated into it. The NSX-T reference design shown in Figure 25 makes a clear distinction between ESXi compute clusters dedicated to running applications (that is, vSphere clusters running user or tenant virtual machines), and those clusters dedicated to running NSX-T routing and services virtual machines (that is, NSX Edge Nodes as VMs or bare-metal). The architecture calls these dedicated clusters compute clusters and edge clusters. VMware Validated Design documents for Software-Defined Data Center (SDDC) also described “converged” designs, in which an edge-node virtual machine can coexist with the user’s virtual machines, eliminating the need for edge clusters. The key implication, as we will see, is that edge-node virtual machines that route between the NSX-T overlay and the rest of the IT infrastructure require that routing configurations and policies be defined on the physical switches they connect to. For this reason, at scale, it becomes complicated, if not impossible, to enable the edge-node virtual machines to be placed anywhere in the infrastructure, especially when using a Layer-3-access leaf-and-spine fabric design. This limitation does not occur when using Cisco ACI. NSX-T GENEVE—Understanding BUM traffic replication The NSX-T network virtualization capabilities rely on implementing a software GENEVE tunnel endpoint (VTEP) on the vSphere Distributed Switch (VDS). This is accomplished by adding NSX-T kernel modules to each ESXi host. The hypervisor software’s lifecycle management is thereby tied to that of NSX-T. The NSX-T kernel modules are programmed from the NSX-T Manager Appliance. During the NSX-T host preparation process for an ESXi cluster, the NSX-T administrator enables GENEVE on ESXi clusters from the NSX-T Manager. This process requires selecting a VDS that already exists on the host, during the NSX-T host preparation process. At this time, a new VMKernel interface is created on each ESXi host on the given cluster using a dedicated TCP/IP stack specific to the VTEP traffic. The NSX-T Manager also creates a new dvPortGroup on the VDS. The GENEVE VMKNIC is placed in that dvPortGroup and given an IP address: the NSX-T VTEP address. The NSX-T VTEP address can be configured through either DHCP or an NSX-T Manager–defined IP pool. The NSX-T VTEP IP

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Different fabrics in physical infrastructure and NSX-T fabric, Edge Nodes, distributed logical routers, utilizing physical devices in the data center for service insertions between NSX-T workloads, and so forth. Sometimes separation of roles must also be maintained, with network teams responsible for all network connectivity and virtualization or security teams responsible for NSX-T security features. These customers can utilize the integrated overlay capabilities of the Cisco ACI fabric for automated and dynamic provisioning of connectivity for applications while using the NSX-T network services such as the virtual load balancer, distributed firewall, microsegmentation, and other NSX-T security components and NSX-T technology partners. Using NSX-T Distributed Firewall and Cisco ACI–integrated overlays This design alternative uses supported configurations on both Cisco ACI and VMware NSX-T. The Cisco ACI fabric administrator works with the VMware NSX-T Administrator to define a VMware SDN VMM domain on the APIC for NSX-T integration, as described in earlier parts of this document. The VMware SDN VMM domain enables APIC to have visibility into the hypervisor hosts configured with the VLAN Transport Zone from the NSX-T inventory. As of the writing of this document, VMware SDN VMM domains only support VLAN transport zones. The APIC VMware SDN VMM domain integration interacts with the NSX-T Manager Appliance in the same way as when PowerShell, vRealize Orchestrator, or another orchestration system is used, through NSX-T’s public northbound API. Once the VMware SDN VMM domain has been established, the APIC configures a VLAN transport zone with the same name as the VMware SDN VMM domain created on NSX-T Manager Appliance. Afterward, the NSX-T administrator will add the hosts that need networking into the APIC-deployed VLAN transport zone. During this one-time setup phase, NSX-T administrator configures whether to utilize the existing vSphere Distributed Switch (VDS) on the host or to deploy an NSX-T-managed vSphere Distributed Switch (N-VDS), and choose the uplink utilized by these VDSs. This is when NSX-T installs and configures NSX kernel modules onto the ESXi hosts, along with the N-VDS if chosen. Please note that VMware is planning to phase out the support for NSX-T-managed vSphere Distributed Switch (N-VDS) on ESXi hosts sometime later in 2022. N-VDS will still be supported and functional on edge nodes. You can find more details about N-VDS host switch support deprecation here. With that in mind, this document focuses on VDS switches, but any of the configurations discussed in this document can be applied to both VDS and N-VDS host switches. The option to deploy NSX-T security features without adding the edge nodes and GENEVE overlay configuration is well known to vCloud Networking and Security. The NSX-T Distributed Firewall, microsegmentation, guest introspection, and data security features are fully functional and can work without the use of NSX-T overlay networking features. This type of installation is shown in Figure 19. In this model of operation, the connectivity requirements for virtual machine traffic are provisioned on Cisco APIC by creating bridge domains and EPGs and associating EPGs with VMware SDN VMM domains, instead of creating logical. Honda Nsx Wallpapers Hd Wallpaper. Honda Nsx 2025 Wallpaper. Honda Nsx Wallpapers. Nissan Nsx. Honda Nsx Jdm. Honda Nsx 2025. Honda Nsx Type R. 90s Japanese Cars. Honda Sports Car. 92’ NSX. Honda NSX AccuraNSX 2025 Source : Insta @misovisual. carinaction. More about this Pin. 92. Saves. 6. Likes. 2560x1440 Free download 2025 Acura NSX Color Indy Yellow Pearl Front HD Wallpaper 10 [2560x1440] for your Desktop, Mobile Tablet. Explore NSX Wallpaper. Honda NSX Wallpaper, Honda NSX Wallpaper, Acura NSX Wallpaper

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User8156

Resolutions 1280×720 1366×768 1920×1080 2560×1080 2560×1440 – 2K 2560×1600 2560×1700 3440×1440 3840×2160 – 4K 3840×2400 7680×2160 – dual 4KSoftwareF.A.Q Search for: Menu Search Search for: Resolutions 1280×720 1366×768 1920×1080 2560×1080 2560×1440 – 2K 2560×1600 2560×1700 3440×1440 3840×2160 – 4K 3840×2400 7680×2160 – dual 4KSoftwareF.A.Q You are here: Home 3440x1440 Resolution: 3440x1440 Live Wallpapers Here are listed 302 3440x1440 High Quality Live Wallpapers, HD Animated Wallpapers. Latest Videos 3440x1440 91 Votes in Vehicle Mazda RX-7 Neon City Live Wallpaper 3440x1440 56 Votes in Vehicle Ferrari F40 Forza Horizon 4 Live Wallpaper 3440x1440 27 Votes in Anime Yumeko Jabami Gambling Kakegurui Live Wallpaper 3440x1440 2 Votes in Anime Barbara Lying Down Genshin Impact Live Wallpaper 3440x1440 6 Votes in Anime Black Rock Shooter Live Wallpaper 3440x1440 29 Votes in Vehicle Subaru Impreza Wrx Sti 2011 Hatchback Live Wallpaper 3440x1440 34 Votes in Vehicle BMW M4 Particles Live Wallpaper 3440x1440 15 Votes in Vehicle Honda NSX Live Wallpaper 3440x1440 5 Votes in Anime Virtual Youtubers At The Train Station Live Wallpaper 3440x1440 8 Votes in Vehicle Mazda RX-7 FD Live Wallpaper 3440x1440 11 Votes in Anime Autumn Festival Live Wallpaper 3440x1440 4 Votes in Lifestyle Rainy Day Interior Live Wallpaper 3440x1440 16 Votes in Vehicle Lamborghini Diablo GTR Live Wallpaper 3440x1440 32 Votes in Sci-fi Star Destroyer Star Wars Live Wallpaper 3440x1440 157 Votes in Vehicle Nissan Skyline GTR34 Live Wallpaper 3440x1440 27 Votes in Anime Sad Mikasa Ackerman Attack On Titan Live Wallpaper ← Prev1…13141516171819Next → © 2021-2025 MoeWalls - Pictures are for personal, non commercial use. Privacy PolicyDisclaimerTerms Of Service Back to Top

2025-04-25
User3160

What-is-VMware-NSX-T-Manager-Unified-Appliance-and-Installation Recently, I have been doing a lot of NSX labbing in the home lab environment, between NSX-V and starting to lab with NSX-T as well. NSX-T certainly seems to be the direction that VMware will be heading with the NSX product roadmap and certainly could be a merge of the two in the future. However, for now, they are separate products. NSX-T is a multi-hypervisor product that does not require vCenter Server, unlike NSX-V. NSX-V is the VMware only variant of the product. There are definitely similarities between the two, but also differences. In this post, we will take a look at the first core component of the VMware NSX-T installation – the NSX-T Manager. Let’s look at what is VMware NSX-T Manager Unified Appliance and installation to discuss the unified appliance, its purpose, and also installing the NSX-T Manager appliance.Unlike downloading NSX-V, when you go to download NSX-T from VMware, you will see the NSX-T Data Center Unified Appliance available for download. What is this exactly? The NSX-T Data Center Unified Appliance is an appliance included in the installation of NSX-T. It includes the ability to deploy the appliance in the roles of NSX Manager, Policy Manager, or Cloud Service Manager. At this time, it only supports one role at a time. Installing VMware NSX-T Manager applianceThe NSX-T Manager is the first role that you stand up with the NSX-T environment. It provides the graphical user interface and access to REST APIs. This allows creating, configuring, and monitoring NSX-T Data Center. The NSX-T Manager is used to create such components as logical switches and routers as well as firewalls. A couple of things to note about the NSX-T Manager:It provides the management plane of the NSX-T solutionYou can only have one instance of NSX-T manager running. If in

2025-04-25
User3870

Review the known upgrade problems and workaround documented in the NSX release notes.See the NSX Release Notes. Follow the system configuration requirements and prepare your infrastructure. See the system requirements section of the NSX Installation Guide. Evaluate the operational impact of the upgrade. Upgrade your supported hypervisor. If you have an earlier version of NSX Intelligence installed, upgrade NSX Intelligence first. Complete the Pre-Upgrade Tasks.Verify that the NSX environment is in a healthy state. Download the latest NSX upgrade bundle. If you are using NSX Cloud for your public cloud workload VMs, remove all NSX Cloud components before proceeding with the upgrade. NSX Manager upgrade is not allowed when NSX Cloud components are present. Undeploy NSX Cloud configurations as described in the topic Un-deploy NSX Cloud available in the NSX Installation Guide. Upgrading NSX Cloud components to 4.2 and later is not available. Upgrade your upgrade coordinator. Upgrade the NSX Edge cluster. Upgrade the hosts. Upgrade the Management plane. Post-upgrade tasks. Troubleshoot upgrade errors.

2025-04-17
User2260

The case where customers also use NSX-T overlay capabilities. NSX-T GENEVE architecture This section describes various alternatives for running NSX-T GENEVE overlay capabilities on a Cisco ACI fabric. Figure 25 shows a general representation of the reference architecture for NSX-T as outlined in the NSX-T for Data Center Design Guide. In the NSX-T reference architecture, VMware recommends dedicating compute resources for user applications and for running NSX-T Edge Nodes, all connected through a leaf-and-spine fabric to maximize bisectional bandwidth. In the figure, servers that cannot be part of the NSX-T overlay are shown in blue, including bare-metal servers, other hypervisors, container platforms, and vSphere clusters without NSX-T installed. Figure 25. Compute clusters, management cluster, and edge cluster for a multiple vCenter solution In the NSX-T architecture, the NSX-T Manager Appliance is the heart of the system. The NSX-T Manger Appliance has Management Plane, Control Plane, and policy integrated into it. The NSX-T reference design shown in Figure 25 makes a clear distinction between ESXi compute clusters dedicated to running applications (that is, vSphere clusters running user or tenant virtual machines), and those clusters dedicated to running NSX-T routing and services virtual machines (that is, NSX Edge Nodes as VMs or bare-metal). The architecture calls these dedicated clusters compute clusters and edge clusters. VMware Validated Design documents for Software-Defined Data Center (SDDC) also described “converged” designs, in which an edge-node virtual machine can coexist with the user’s virtual machines, eliminating the need for edge clusters. The key implication, as we will see, is that edge-node virtual machines that route between the NSX-T overlay and the rest of the IT infrastructure require that routing configurations and policies be defined on the physical switches they connect to. For this reason, at scale, it becomes complicated, if not impossible, to enable the edge-node virtual machines to be placed anywhere in the infrastructure, especially when using a Layer-3-access leaf-and-spine fabric design. This limitation does not occur when using Cisco ACI. NSX-T GENEVE—Understanding BUM traffic replication The NSX-T network virtualization capabilities rely on implementing a software GENEVE tunnel endpoint (VTEP) on the vSphere Distributed Switch (VDS). This is accomplished by adding NSX-T kernel modules to each ESXi host. The hypervisor software’s lifecycle management is thereby tied to that of NSX-T. The NSX-T kernel modules are programmed from the NSX-T Manager Appliance. During the NSX-T host preparation process for an ESXi cluster, the NSX-T administrator enables GENEVE on ESXi clusters from the NSX-T Manager. This process requires selecting a VDS that already exists on the host, during the NSX-T host preparation process. At this time, a new VMKernel interface is created on each ESXi host on the given cluster using a dedicated TCP/IP stack specific to the VTEP traffic. The NSX-T Manager also creates a new dvPortGroup on the VDS. The GENEVE VMKNIC is placed in that dvPortGroup and given an IP address: the NSX-T VTEP address. The NSX-T VTEP address can be configured through either DHCP or an NSX-T Manager–defined IP pool. The NSX-T VTEP IP

2025-04-16
User4879

For the NSX-T unified appliance.Choose the storage destination for the NSX-T unified applianceConfigure the network port group it will connect to.Select the network to attach the NSX-T unified applianceOn the Customize template screen contains the configuration for setting passwords across the board. This include the root account and CLI admin credentials. Customize template configuring the user accounts and passwords for NSX-T unified applianceOn step 8, Customize Template, one of the configuration options is Rolename. This is the important drop down where you actually choose the role of the unified appliance. At this point, I will refer to it as the NSX-T Manager, since that is what I am selecting.Configure the rolename of the NSX-T unified applianceThe NSX-T Manager is not ready to deploy with the configured settings.Ready to complete the NSX-T unified appliance deployment as an NSX-T ManagerAfter the NSX-T Manager deployment is complete, you should eventually be able to hit the web interface and login with the password configured during the deployment process. ***Note*** You will have to accept the EULA and make a choice in joining the VMware CEIP program after logging in.NSX-T Manager appliance deployment completes successfully ready to loginThe NSX-T Manager interface is beautiful, running the HTML 5 interface through and through. I really like the layout of the appliance as well. you have all the menus on the left hand side that pop out from the side, so it is extremely un-cluttered. After logging into the NSX-T Manager dashboardThe Dashboard overview of the appliance displays all the pertinent information about the NSX-T environment.NSX-T Manager Dashboard OverviewThe Getting Started dashboard is a great place to start with NSX-T. This page basically steps you through next steps in deployment of the NSX-T solution.NSX-T Manager Getting Started dashboardFinal ThoughtsThe NSX-T unified appliance is the all-in-one appliance that allows

2025-04-11
User4088

Plane (CCP). Local Control Plane (LCP) is hosted on the workload servers. Prior to NSX-T Release 2.4, NSX-T Manager and NSX-T Controller were two separate individually deployed components; starting from NSX-T Release 2.4, both management and control planes are integrated into NSX-T Manager Appliance. ◦ Management Plane provides entry point to the system for an API as well as an NSX-T graphical user interface. It is responsible for maintaining user configurations, handling user queries, and performing operational tasks on all management, control, and data-plane nodes. Management Plane instructs Control Plane on how to configure the NSX-T fabric to reach the desired state. ◦ Central Control Plane computes the runtime state of the system based on the configuration from Management Plane and disseminates the topology information reported by the data-plane elements, and pushes the stateless configurations to the forwarding engines. NSX-T Control Plane is divided into two parts, Central Control Plane (CCP) and Local Control Plane (LCP). CCP runs on the NSX-T Manager Appliance, and LCP runs on the individual host kernels. ● ESXi Kernel Modules: A set of vSphere installation bundles (vibs) that are installed on each hypervisor host during the NSX-T host configuration process. This allows you to extend the NSX-T management and control planes to the hosts. These kernel modules provide services such as distributed firewall and distributed routing and provide a Local Control Plane (LCP). ESXi Kernel Modules can be deployed on to the hosts through NSX-T Manager Appliance. ● NSX-T Edge Nodes: Can be deployed as a virtual machine or as bare metal. NSX-T Edge Nodes provide connectivity to the physical infrastructure from within the NSX-T fabric. They also provide centralized network services that cannot be distributed to the hypervisors, such as load balancing, Network Address Translation (NAT), and edge firewalls, to name a few. Edge nodes can be grouped into clusters representing a pool of compute capacity that one or more centralized network services can consume. Some customers may adopt NSX-T for its network virtualization capabilities, while others are interested only in its security features. With the exception of guest introspection security features that are required for the integration of certain technology partner solutions, Cisco ACI provides equivalent functionality to NSX-T and in many cases offers a superior feature set that better meets real-world customer requirements. NSX-T for Data Center network requirements Hypervisor-based network overlays such as those provided by VMware NSX-T are intended to provide network virtualization over any physical fabric. Their scope is limited to the automation of GENEVE-based virtual network overlays created between software-based GENEVE Virtual Tunnel Endpoints (VTEPs) running at the hypervisor level. In the case of NSX-T, these software VTEPs are only created within the vSphere Distributed Switch (VDS) or the NSX-T-managed vSphere Distributed Switch (N-VDS) by adding NSX-T kernel modules on workload servers that enable GENEVE functionality. The virtual network overlay must run on top of a physical network infrastructure, referred to as the underlay network. The NSX-T Manager Appliance does not provide any level of configuration, monitoring, management,

2025-04-08

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