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HKEY_LOCAL_MACHINE\SYSTEM\CurrentControlSet\Services\DnsCache\Parameters\ EnableMulticast
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To disable LLMNR on a specific network interface, create and set the following registry value to 0 (zero):
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HKEY_LOCAL_MACHINE\System\CurrentControlSet\Services\Tcpip\Parameters\ <adapterGUID>\EnableMulticast
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Note that every network adapter is assigned its own unique GUID You will need to find out which GUID represents your network adapter and replace <adapterGUID> with that value
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One of the biggest challenges with servers in a remote location is ensuring physical security It s not always possible to secure physical access to a remote datacenter Servers must sometimes be placed in less than ideal locations, where the risk of physical compromise is greater For example, organizations with small satellite offices might require that their data reside on local servers for performance reasons (that is, when high-speed WAN links are cost prohibitive) In such situations, it s not unusual for the server to be placed in an unused closet or even under someone s desk Your server might also be physically co-located in shared datacenters with servers from other organizations, and it s not always possible to control who outside of your organization can physically access your servers Although every systems administrator works hard to avoid insecure setups whenever possible, options and choices are sometimes limited, and we do the best we can with what we have The biggest problem with a less than ideal setup is that some unauthorized individual with physical access to the servers might try to get to the data directly on the disks using boot CDs or USB drives, or the person may actually move the physical hard drive to a different computer Such a threat requires that data protection be in place to avoid the system being compromised, even if physical access is somehow obtained BitLocker, introduced in Windows Vista Enterprise and Ultimate editions, is a security feature that can protect data from physical access It protects operating system files and any other volume you designate as being protected by BitLocker It works in conjunction with the Trusted Platform Model (TPM) chip on the system to make sure that all components that load during the operating system s boot process are not compromised This protection remains in place even if the operating system is shut off TPMs contain special registers called Platform Configuration Registers (PCRs) that store the hash value of the various startup components, including the BIOS, Master Boot Record (MBR), boot sector, and boot manager code
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A few requirements are necessary prior to your enabling the BitLocker Drive Encryption feature You can install this feature at any time, but to take advantage of its full functionality, your system must meet the following requirements: A system with a version 12 TPM chip A Trusted Computing Group (TCG) compatible BIOS At least two partitions on your system: one system partition set to active and another in which you will load your operating system (the boot partition) A BIOS that supports the USB mass storage device class for booting from a USB flash drive
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BitLocker performs full-volume encryption, which makes it mostly transparent to the system, except during startup when a few additional steps might be needed for authentication before the volume can be unlocked The volumes are protected using a 256-bit full-volume encryption key This key is then protected by a 256-bit volume master key The volume master key is in turn protected by several methods, depending on the authentication method you have specified The following authentication methods are available: TPM only TPM plus PIN (4 20 digits) TPM plus startup key Clear key Startup key or recovery key Recovery password
Each method provides various levels of protection for the volume master key Your selection of a method depends on your environment or particular scenario and requirements for balancing the need to safeguard the data with ease of use and recoverability
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