Design of Software Partitioning for X86 Family Processors: HPPAR
Authors:MANJUNATH A.E
Authors:MANJUNATH A.E
Abstract: A very large number of computing and I/O resources will be available in a single platform. Partitioning these
resources when they were not in a single platform was simple because the hardware was physically in separate boxes. For one
thing, the processors did not share a common memory and also the common controllers. Virtualization with commodity
hypervisors holds the promise of solving this problem of logical partitioning of resources in a single box. What commodity
hypervisors cannot do is create efficient partitions of dedicated resources which are not shared with other partitions. This
capability is critical in certain enterprise level class environment.
Keywords: Partitioning, Hypervisor, Virtual BIOS, Unified Extensible Firmware Interface, Single Root I/O Virtualization.
I. INTRODUCTION
As in recent years many companies have introduced a
software logical partitioning feature, LPARs, on their iSeries
servers which uses a firmware layer to create logical
partitions. The firmware is able to partition a server into
different hardware partitions by having strict control over
all memory mapping to physical memory for computation
and I/O in each partition. This technique adds flexibility
by allowing repartitioning without requiring a reboot of the
server. There is a performance tradeoff because of the
overhead processing degradation that is required for the
memory mapping function. Each of the software
partitioning solutions reviewed is differentiated by the
processor family that it supports. As such, High-powered
partitioning (HPPAR) is architected to uniquely provide a
feature set for Intel x64 processors which is comparable to
LPARs on IBM’s Power processors.
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